Vahid Salarvand |Mechanical| Excellence in Research

Dr. Vahid Salarvand |Mechanical| Excellence in Research

Imam Khomeini International University,Iran

Dr. Vahid Salarvand is a distinguished academic and researcher affiliated with Imam Khomeini International University (IKIU) in Iran. He holds a significant role in his field, contributing to both teaching and research at the university. With a background in [insert specific field of study], Dr. Salarvand has garnered expertise in [mention specific research areas or specialties]. Throughout his career, he has been involved in various scholarly publications and academic collaborations, contributing to advancements in his field. Dr. Salarvand’s dedication to higher education and research has made him a respected figure at Imam Khomeini International University.

Summary:

Dr. Vahid Salarvand is a highly skilled and dedicated researcher in the fields of materials engineering and electrochemical performance. His academic background, combined with a rich set of technical skills and significant contributions to advanced materials synthesis, makes him a strong candidate for the “Excellence in Research” award. His ability to link fundamental research with industrial applications demonstrates a solid foundation for continued success and innovation.

 

Professional Profiles:

Scopus

🎓 Education :

Vahid Salarvand is currently pursuing a Ph.D. in Materials Engineering and Metallurgy at the Department of Materials Science and Engineering at Imam Khomeini International University, Iran, starting in 2022. His doctoral research focuses on materials science, and he is actively contributing to innovative work in the field. He completed his M.S. in Materials Engineering and Metallurgy at the same university from 2015 to 2018, where his thesis focused on the “Synthesis and characterization of nanostructure molybdenum nickel alloy produced by mechanical milling.” He also holds a B.S. in Mechanical Engineering, specializing in construction and production, from Saman Al-Hajj Technical and Vocational School, Mashhad, Iran (2013-2015).

 

🏢 Experience:

Vahid Salarvand has significant professional experience in the industry, having worked as a Quality Control Manager at Carno Ideal Arman Company from 2020 to 2023. During this role, he oversaw the quality assurance processes, ensuring that production standards were met, which aligns with his technical and engineering expertise.

🛠️Skills:

Synthesis of materials using hydrothermal methods.,Proficient in additive manufacturing using Fused Deposition Modeling (Ender 5) and Digital Light Processing (Anycubic Photon M3 Max).,Skilled in light microscopy, X-ray diffraction (XRD), and metallography (mounting and polishing).,Experienced in heat treatment using Carbolite Tube Furnace (CTF 3 1600) for material processing.

 

Research Focus :

His research focuses on the synthesis and characterization of advanced materials for applications in energy systems, corrosion resistance, and electrocatalysis. His work in electrochemical processes, especially for hydrogen evolution reactions and water splitting, reflects his deep understanding of materials science.

 

🔬Awards:

Vahid’s notable accomplishments include an international patent for an invention entitled “NiMo-MoO2 catalyst synthesis process” (Class B01J 37.03 C22C 1.05). He has also conducted an industrial thesis under the supervision of the Nano Wealth Development Headquarters, which reflects his strong collaboration with industry and research communities.

Conclusion:

Dr. Salarvand’s strengths in both academic and industrial research, along with his passion for advancing materials science, align well with the criteria for “Excellence in Research.” By furthering his collaborations and seeking additional funding opportunities, he could significantly increase his impact. Based on his current achievements and future potential, he stands out as a deserving candidate for the award, showcasing a strong commitment to innovation and research excellence.

 Publications:

  • Microstructure, mechanical properties, and corrosion resistance of dissimilar weld joints between SS304 and Inconel 600 welded using gas tungsten arc welding
    • Authors: Salarvand, V., Ahmadian, F., Torabpour, M., Mostafaei, A., Brabazon, D.
    • Journal: International Journal of Pressure Vessels and Piping
    • Year: 2024
    • Citations: 0

 

  • Facile hydrothermal synthesis of combined MoSe2PS nanostructures on nickel foam with superior electrocatalytic properties for hydrogen evolution reaction
    • Authors: Salarvand, V., Abedini Mohammadi, M., Yousefifar, A., Yazdi, M.S., Mostafaei, A.
    • Journal: International Journal of Hydrogen Energy
    • Year: 2023
    • Citations: 9

 

  • In-situ hydrothermal synthesis of NiCo(X)Se compound on nickel foam for efficient performance of water splitting reaction in alkaline media
    • Authors: Salarvand, V., Abedini Mohammadi, M., Ahmadian, F., Saghafi Yazdi, M., Mostafaei, A.
    • Journal: Journal of Electroanalytical Chemistry
    • Year: 2022
    • Citations: 10

 

  • Microstructure and corrosion evaluation of as-built and heat-treated 316L stainless steel manufactured by laser powder bed fusion
    • Authors: Salarvand, V., Sohrabpoor, H., Mohammadi, M.A., Mostafaei, A., Brabazon, D.
    • Journal: Journal of Materials Research and Technology
    • Year: 2022
    • Citations: 21

 

  • Production and characterization of high-performance cobalt–nickel selenide catalyst with excellent activity in HER
    • Authors: Ahmadian, F., Salarvand, V., Saghafi, M., Noghani, M.T., Yousefifar, A.
    • Journal: Journal of Materials Research and Technology
    • Year: 2021
    • Citations: 7

 

  • Microstructural and mechanical evaluation of post-processed SS 316L manufactured by laser-based powder bed fusion
    • Authors: Sohrabpoor, H., Salarvand, V., Lupoi, R., Choi, C.-H., Brabazon, D.
    • Journal: Journal of Materials Research and Technology
    • Year: 2021
    • Citations: 33

 

  • Synthesis, Characterization, and Investigation of Hydrogen Evolution Activity of Ni-Mo/Al2O3 Composite
    • Authors: Salarvand, V., Mahmoodi, H., Ahmadian, F., Saghafi, M., Noghani, M.T.
    • Journal: ChemistrySelect
    • Year: 2020
    • Citations: 4

 

  • Investigation of microstructure and corrosion resistance of AISI 304 stainless steel joint with ER308 and ERNiCr-3 filler metals by GTAW
    • Authors: Jafarzadegan, M., Ahmadian, F., Salarvand, V., Kashkooli, S.
    • Journal: Metallurgical Research and Technology
    • Year: 2020
    • Citations: 3

 

  • Hydrogen evolution activity of NiMo-MoO2 produced by mechanical milling
    • Authors: Salarvand, V., Saghafi, M., Noghani, M.T.
    • Journal: Journal of Ultrafine Grained and Nanostructured Materials
    • Year: 2019
    • Citations: 5

 

  • Charge storage properties of mixed ternary transition metal ferrites MZnFe oxides (M = Al, Mg, Cu, Fe, Ni) prepared by hydrothermal method
    • Authors: Saghafi, M., Hosseini, S.A., Zangeneh, S., Vahedi, S., Mohajerzadeh, S.
    • Journal: SN Applied Sciences
    • Year: 2019
    • Citations: 17

 

Jiangbo Xu | Slope engineering |Best Researcher Award

Mr. Jiangbo Xu | Slope engineering |Best Researcher Award

Mrs.Jiangbo Xu,Chang’an University,China

Mrs. Jiangbo Xu is a distinguished academic and researcher at Chang’an University in China. With a focus on advancing research in her field, she has made notable contributions to the academic community through her work in engineering and technology. At Chang’an University, Mrs. Xu engages in pioneering studies and development, driving innovations that impact both academia and industry. Her dedication to research excellence and educational advancement has positioned her as a respected figure in her discipline.

Summary:

Mrs. Jiangbo Xu is an accomplished researcher with a strong foundation in geotechnical engineering. Her work combines technological innovation with sustainable practices, addressing real-world challenges in infrastructure and environmental protection. Through her role as a doctoral supervisor and her extensive research output, she contributes both to academic knowledge and to practical advancements in her field. Her leadership in projects backed by major research grants highlights her capabilities in driving impactful studies, and her publications affirm her standing as a respected researcher in geotechnical engineering.

Professional Profiles:

 Scopus

🎓 Education :

Ph.D. in Geological Engineering,Institute of Geology and Geophysics, Chinese Academy of Sciences,Advisor: Professor Wu Faquan
2008.09–2014.07,Master’s in Geotechnical Engineering,Wuhan Institute of Rock and Soil Mechanics, Chinese Academy of Sciences
Advisors: Professors Zheng Yingren and Feng Xiating
2008.09–2011.07,Bachelor’s in Civil Engineering,China University of Geosciences (Beijing),2004.09–2008.07

🏢 Experience:

Associate Professor in Geotechnical Engineering | 2018.11–Present,Doctoral Supervisor | 2020.01–Present,Master’s Supervisor in Geotechnical Engineering | 2017.11–Present,Lecturer in Geotechnical Engineering | 2014.07–2018.11

🛠️Skills:

Geotechnical Engineering: Expertise in soil mechanics, rock mechanics, slope stability, and geotechnical monitoring.,Digital Perception Systems: Development of intelligent monitoring systems for geotechnical engineering, focusing on applications in infrastructure like tunnels and slopes.,Numerical Simulation: Proficient in finite element analysis, numerical simulation techniques, and computational modeling of geotechnical issues.,Environmental Impact and Carbon Emission: Specialized in carbon emissions reduction strategies for infrastructure projects, particularly highway subgrade slopes and slope ecological protection.,Research and Analysis: Strong analytical skills in geotechnical project design, materials assessment, and hazard identification.

Research Focus :

2024,Application of Permeation Crystallization Materials in Concrete Crack Repair | Shaanxi Provincial Department of Science and Technology,Digital Perception and Intelligent Decision-Making System for Geotechnical Engineering | Shaanxi Province “Scientist + Engineer” Project,Slope Digital Collaborative Perception and Intelligent Decision-making System | Xi’an Science and Technology Bureau,2023,Ecological Protection of Highway Subgrade Slopes with Carbon Emission Algorithms | Sichuan Communications Investment Design & Consultation Research Institute Co., Ltd.,Rocky Collapse Hazards Monitoring at Tunnel Entrances | Shaanxi Provincial Department of Transportation2022,Prevention Technologies for Railway Tunnel Defects | China Railway First Survey and Design Institute Group Co., Ltd.

🔬Awards:

Shaanxi Provincial Science and Technology Award for advancements in geotechnical digital monitoring systems.,Chang’an University Outstanding Research Award for contributions to geotechnical engineering education and innovation.

Conclusion:

Mrs. Jiangbo Xu is a strong candidate for the Research for Best Researcher Award. Her achievements in advancing sustainable geotechnical engineering and her contributions to knowledge and practice make her well-suited for this recognition. With opportunities to expand her international influence and further diversify her research, her career trajectory indicates continued and growing impact in her field.

Publications :

  • Concrete crack recognition and geometric parameter evaluation based on deep learning
    • Authors: Shaowei, W., Jiangbo, X., Xiong, W., Zixuan, Z., Xinyu, C.
    • Journal: Advances in Engineering Software
    • Year: 2025

 

  • Experimental study on seismic characteristics of slope supported by long-short composite anti-slide piles
    • Authors: Lai, J., Liu, Y., Liu, Y., Jiangbo, X.
    • Journal: Scientific Reports
    • Year: 2024

 

  • Study on the correlation between pore structure characterization and early mechanical properties of foamed concrete based on X-CT
    • Authors: Zhao, D., Xu, J., Han, Z., Liu, Y., Yang, X.
    • Journal: Construction and Building Materials
    • Year: 2024

 

  • Research on the method of determining landslide threshold based on accelerating point dynamic identification
    • Authors: Hou, X., Liu, Y., Xu, J., Chen, S., Zhang, X.
    • Journal: Landslides
    • Year: 2024

 

  • Influence of phyllite aspect ratio under static and dynamic compression
    • Authors: Xu, J., Yu, Y., Sun, G., Lai, J., Wang, L.
    • Journal: Chongqing Daxue Xuebao/Journal of Chongqing University
    • Year: 2024
  • Ground Deformation of Shield Tunneling through Composite Strata in Coastal Areas
    • Authors: Wu, X., Xu, J., Wang, S., Qiao, W., Zeng, X.
    • Journal: Buildings
    • Year: 2024
  • Parallel finite layer method for land subsidence and its homotopy parameter inversion
    • Authors: Wang, S., Xu, J., Xu, J.
    • Journal: Environmental Modelling and Software
    • Year: 2024

 

  • Study on Slope Monitoring and Stability Based on Bolt–Cable Combined Support
    • Authors: Liu, Y., Lai, J., Xu, J.
    • Journal: Buildings
    • Year: 2024

 

  • Numerical Study on Permeability of Reconstructed Porous Concrete Based on Lattice Boltzmann Method
    • Authors: Zhao, D., Xu, J., Wang, X., Zhang, J., Sun, R.
    • Journal: Buildings
    • Year: 2024

 

  • Investigation into the degradation patterns of the physical and mechanical characteristics of phyllite within a hydrothermal environment
    • Authors: Xu, J., Zeng, X., Sun, H., Zhao, D., Qi, Y.
    • Journal: Bulletin of Engineering Geology and the Environment
    • Year: 2024

 

Akash Misar | wheeler | Best Researcher Award

Mr.Akash Misar | wheeler | Best Researcher Award

Mr.Akash Misar ,REplus engitech Pvt Ltd,India.

Dr. Elham Zanguei is a distinguished academic affiliated with Birjand University of Medical Sciences in Iran. Known for her contributions to the medical field, she specializes in healthcare research and education, advancing knowledge in her area of expertise. Dr. Zanguei is highly regarded for her dedication to medical sciences, with a focus on both teaching and research aimed at improving healthcare outcomes.

Summary:

Mr. Akash Misar’s solid academic foundation, particularly in mechanical and heat power engineering, is well-aligned with research-focused awards. His work experience at REplus Engitech Pvt Ltd further complements his technical skills, suggesting strong potential for research in energy efficiency, thermal systems, and related fields.

Professional Profiles:

Scopus

🎓 Education :

M. Tech in Heat Power Engineering,Visvesvaraya National Institute of Technology (VNIT), Nagpur | May 2023,CGPA: 8.96,Completed a Master’s degree with a specialization in Heat Power Engineering, developing expertise in thermal systems and their applications.,B.E. in Mechanical Engineering,NDMVP’s KBTCOE, Nashik (Savitribai Phule Pune University) | May 2020,CGPA: 8.46,Graduated with a Bachelor’s in Mechanical Engineering, gaining a solid foundation in mechanical systems, thermodynamics, and applied engineering.,12th Science (Maharashtra State Board),MGV’s ASC College, Manmad | May 2016,Percentage: 66.31%,Focused on science subjects, setting the groundwork for higher education in engineering disciplines.,10th Standard (Maharashtra State Board),Madhyamik Vidyalaya, Vanarwadi | May 2014,Percentage: 71.00%,Excelled in foundational subjects, preparing for a future in technical education.

🏢 Experience:

CAE Engineer (Thermal),Revamp Moto Pvt. Ltd., Nashik, MH, India | June 2023 – June 2024
As a Thermal Engineer, contributed to the design and development of battery thermal management systems for electric vehicles. Key projects included optimizing cooling systems for batteries and creating a portable refrigeration system that maintains 0°C. Led efforts in heating solutions for hot boxes to sustain internal temperatures of 85°C. Performed computational fluid dynamics (CFD) simulations to enhance airflow efficiency, and collaborated on battery testing and development for improved performance.,Intern,Revamp Moto Pvt. Ltd., Nashik, MH, India | May 2022 – June 2023
Supported research and simulation efforts on battery cooling systems for electric vehicles, translating theoretical knowledge into practical applications. Assisted in the testing and refinement of cooling technologies.Part-Time Employee (Administrative Office),NDMVP’s KBTCOE, Nashik, MH, India | July 2018 – March 2020
Gained administrative experience through the “Earn and Learn” scheme, balancing office work with academic responsibilities.,Part-Time Employee (Production Department),SIPL Pvt. Ltd., Nashik, MH, India | July 2017 – July 2018,Acquired hands-on experience in industrial production processes, working closely with the company’s production team to,streamline operations.

🛠️Skills:

Technical SkillsThermal Engineering,Battery Thermal Management,Research and Development,Computational Fluid Dynamics (CFD),Heat Transfer,Ansys Fluent,Solidworks,Professional Skills,Innovation,Problem Solving,Adaptability,Collaboration

Research Focus :

Focused on advancing thermal engineering, particularly in battery thermal management and computational fluid dynamics. Key areas of research include developing innovative cooling and heating systems for electric vehicle batteries, optimizing airflow and thermal performance through simulations, and exploring cutting-edge alternatives to conventional cooling technologies.

Conclusion:

Mr. Misar has strong foundational qualities, particularly in his academic background and specialization. However, to be a top contender for the Best Researcher Award, he would need to bolster his profile with documented research outputs, contributions to innovative solutions, and wider recognition in the academic or professional community. Focusing on areas such as publishing, patents, and presenting research outcomes will enhance his candidacy for future awards.

Publications :

  • Exploring Physical and Mechanical Properties of Hydrothermally Processed Recycled Non-Sintered Dental Zirconia Wastes
    Authors: Valian, A., Ghasemi, A., Rastbood, E., Zandian, A., Zanguei, E.
    Journal: Journal of the Mechanical Behavior of Biomedical Materials, 2024, Vol. 160, Article 106708.
    DOI: 10.1016/j.jmbbm.2023.106708
    Citation format:
    Valian, A., Ghasemi, A., Rastbood, E., Zandian, A., & Zanguei, E. (2024). Exploring physical and mechanical properties of hydrothermally processed recycled non-sintered dental zirconia wastes. Journal of the Mechanical Behavior of Biomedical Materials, 160, 106708. https://doi.org/10.1016/j.jmbbm.2023.106708

 

  • Dental Management of a Pediatric Patient with Progressive Familial Intrahepatic Cholestasis Having Dental Anomalies: A Case Report and Brief Review of the Literature
    Authors: Yazdizadeh, M., Sharifi, M., Torabi Parizi, A., Zanguei, E., Yazdizadeh, M.
    Journal: BMC Oral Health, 2023, Vol. 23, Article 10.
    DOI: 10.1186/s12903-022-02612-6
    Citation format:
    Yazdizadeh, M., Sharifi, M., Torabi Parizi, A., Zanguei, E., & Yazdizadeh, M. (2023). Dental management of a pediatric patient with progressive familial intrahepatic cholestasis having dental anomalies: A case report and brief review of the literature. BMC Oral Health, 23(1), 10. https://doi.org/10.1186/s12903-022-02612-6

 

Masoumeh Bararzadeh Ledari | Industrial engineering | Best Researcher Award

Dr.Masoumeh Bararzadeh Ledari | Industrial engineering | Best Researcher Award

Dr. Masoumeh Bararzadeh Ledari , Amirkabir university and technology, Iran.

Dr. Masoumeh Bararzadeh Ledari is a distinguished researcher and academic affiliated with Amirkabir University of Technology in Iran. Renowned for her contributions to [field/area of expertise], she has published extensively in peer-reviewed journals and has a strong background in [relevant research/industry areas]. Dr. Ledari is recognized for her commitment to advancing science and technology in Iran, and her work has had a significant impact on both national and international platforms.

Summary:

Masoumeh Bararzadeh Ledari is a highly accomplished researcher with expertise in energy engineering, climate change, and sustainability. Her research spans multiple areas, including water-food-energy-climate and land nexus modeling, resource management, regenerative life models, and building engineering simulation. Her extensive education, including a Ph.D. in Energy Engineering from Sharif University of Technology, highlights her deep technical knowledge. With significant professional experience, she has led multiple projects related to low-carbon hydrogen production, sustainable resource management, and climate change mitigation. Her work in the steel and petrochemical industries focuses on developing and implementing environmentally sustainable technologies, with an emphasis on hydrogen as a clean energy source.

Professional Profiles:

Scopus

Google scholar 

Education :

Ph.D. in Energy Engineering (2014-2021),Sharif University of Technology, Tehran, Iran,Thesis: Hybrid technology evaluation model to minimize the physical cost of the dynamic impact of resource usage and depletion on the,ecosystem’s sustainability,Supervisor: Dr. Yadollah Saboohi,Master of Science in Energy Engineering (2009-2011),Sharif University of Technology, Tehran, Iran,Thesis: Flare Load Reduction by Implementing HIPS in Assaluyeh Gas Refinery,Supervisor: Dr. Soorena Sattari,GPA: 16.94/20,Bachelor of Science in Chemical Engineering (2004-2008),Tehran University, Tehran, Iran,Thesis: Recirculating Gasifier Modelling and Developing a Laboratory Setting,Supervisor: Dr. Alireza Talebizadeh,GPA: 17.06/20,Pre-University Qualification in Math & Physics (2003-2004),Fatemie SA High School,GPA: 18.86/20,Diploma of Math & Physics (1999-2003),Maktab Ghoran High School

Work Experience:

Technical Consultant (2023-present),Focus on low-carbon hydrogen production and its integration into various industries.,Leading projects aimed at decarbonizing steel production and transitioning to low-carbon energy sources.,Head of Technical Group (2023-present),Amirkabir University of Technology & Butia Steel Company,Optimization of the water-energy-materials-carbon nexus in production processes.,Integration of hydrogen as a clean energy source in steel production.,Technical Manager (2022-present),Amirkabir University of Technology – Oghlid Steel Company,Development of low-carbon hydrogen pilot units in the steel industry.,Technical Manager (2023)Presidential Center for Progress and Development,,,Contribution to Carbon Capture and Storage (CCS) technology development and policy framework in Iran.,Head of Technology Management Group (2020-present),Engineering and Industrial Management Consultants Group,Technical-economic development projects focused on resource optimization and industrial processes.,Scientific Director (2021-2022),Tadbirgaran Energy Company – Sharif University of Technology,Technical consultant for energy management and optimization in power plants.

Teaching Experience:

Instructor,Sharif University of Technology, Tehran, Iran,Courses: Building Energy Saving and Optimization, Optimization of Energy Streams (Exergy,Adjacent Professor,AmirKabir University of Technology, Tehran, Iran,Courses: Waste Management in Energy Systems, Renewable Technologies Design and Analysis,Instructor,Tehran University, Tehran, Iran,Course: Building Life Cycle – Carbon Design

Research Focus:

Water-Food-Energy-Climate and Land Nexus Modeling,Resource Management in Circular Economy,Regenerative Life Models and Sustainable Development,Exergy Analysis for Ecosystem Imitation,Climate Change Impact on Natural Resources,Life Cycle Assessment (LCA) and Environmental Sustainability,Hydrogen Development for Low-Carbon Industries

Skills:

Energy Systems Optimization,Exergy Analysis and Thermodynamics,Resource  Management and Circularity,Climate Change Adaptation and Mitigation,Low-Carbon Hydrogen Production,Carbon Capture and Storage (CCS) Technologies,Life Cycle Assessment (LCA),Multi-Sectoral Nexus Modeling (Water-Energy-Land-Climate),Energy Efficiency in Industrial Processes,Technical and Economic Feasibility Studies

Conclusion:

Masoumeh Bararzadeh Ledari’s impressive background in energy engineering, climate change, and sustainable resource management makes her a suitable candidate for the Best Researcher Award. Her research and professional contributions have significant impacts on environmental sustainability, particularly in the areas of low-carbon energy production, climate change mitigation, and the efficient use of resources.

Publications :

Advanced utilization of urban sewage sludge for low-carbon hydrogen and power production in steel manufacturing

  • Authors: MB Ledari, H Akbarnavasi, H Khajehpour, D Bayat, S Edalati
  • Year: 2024
  • DOI: 10.1016/j.enconman.2024.118657

 

2. Aligning Net zero energy, carbon Neutrality, and regenerative concepts: An exemplary study of sustainable architectural practices

  • Authors: SZH Sadat, MB Ledari, H Dehvari, MS Moghaddam, MR Hosseini
  • Year: 2024
  • DOI: 10.1016/j.jobe.2023.109414

 

3. Optimal Planning and Operation of Energy Systems for Cryptocurrency Exploration, Hydrogen Production, and National Power Grid

  • Authors: A Fathi, H Yousefi, A Ghayedhosseini, MB Ledari, M Salehi, P Hajialigol
  • Year: 2024

 

4. Sustainable hydrogen supply chain development for low-carbon transportation in a fossil-based port region: A case study in a tourism hub

  • Authors: F Maleki, MB Ledari, M Fani
  • Journal: International Journal of Hydrogen Energy
  • Year: 2024

 

5. Fostering self-sustaining water-energy regions: A nexus approach to mitigate water scarcity

  • Authors: A Sarikhani, F Joda, MB Ledari, H Akbarnavasi
  • Journal: Sustainable Production and Consumption
  • Year: 2023
  • DOI: 10.1016/j.spc.2023.08.016

 

6. BIM with Blockchain for Decentralised Circular Construction Supply Chain

  • Authors: MBL Faris Elghaish, M Reza Hosseini, Tuba Kocaturk, Mehrdad Arashpour
  • Journal: Digitalization in Construction
  • Pages: 25
  • Year: 2023

 

7. Greening steel industry by hydrogen: Lessons learned for the developing world

  • Authors: MB Ledari, H Khajehpour, H Akbarnavasi, S Edalati
  • Journal: International Journal of Hydrogen Energy
  • Year: 2023

 

8. Water-food-energy-ecosystem nexus model development: Resource scarcity and regional development

  • Authors: MB Ledari, Y Saboohi, S Azamian
  • Journal: Energy Nexus
  • Year: 2023

 

9. An optimization strategy for enhancing energy consumption performance in digital currency miner’s building

  • Authors: AG Hossein Akbarnavasi, Masoumeh Bararzadeh Ledari
  • Journal: Energy Conversion and Economics
  • Year: 2023

 

10. Digitalised circular construction supply chain: An integrated BIM-Blockchain solution

  • Authors: F Elghaish, MR Hosseini, T Kocaturk, M Arashpour, MB Ledari
  • Journal: Automation in Construction
  • Pages: 104746
  • Year: 2023

 

11. Nature as a Teacher for Abiota Self-Organization in Terms of Entropy Analysis

  • Authors: MB Ledari, RB Ledari
  • Journal: Exergy-New Technologies and Applications
  • Year: 2023

 

12. Long- and Short-term Prediction of Bitcoin Energy Consumption

  • Authors: AGMBM Fani
  • Conference: International Conference on Technology and Energy Management (ICTEM, IEEE)
  • Year: 2023

 

13. BIM with Blockchain for Decentralised Circular Construction Supply Chain

  • Authors: F Elghaish, MR Hosseini, T Kocaturk, M Arashpour, MB Ledari
  • Book Chapter: Digitalization in Construction
  • Year: 2023

 

14. Building circularity as a measure of sustainability in the old and modern architecture: A case study of architecture development in the hot and dry climate

  • Authors: SMH Honarvar, M Golabchi, MB Ledari
  • Journal: Energy and Buildings
  • Year: 2022

 

Tolesa Fita Chala | Engineering | Best Researcher Award

Dr.Tolesa Fita Chala | Machining | Best Researcher Award

Dr.Tolesa Fita Chala ,Mattu University, Mattu , Ethiopia, Ethiopia

Dr. Tolesa Fita Chala is a distinguished academic at Mattu University in Mattu, Ethiopia. Known for his expertise and contributions to his field, Dr. Chala plays a vital role in advancing research and education at the university. His dedication to academic excellence and community service has made him a respected figure in Ethiopia’s educational landscape.

Summary:

Dr. Tolesa Fita Chala is renowned for his work in [specific field or discipline, e.g., environmental science, material engineering, biomedical research, etc.]. His research primarily focuses on [specific areas within the field, e.g., climate change mitigation, nanomaterials for medical applications

 

Professional Profiles:

Orcid

Education :

Tolesa Fita Chala completed his Ph.D. at the National Taiwan University of Science and Technology, specializing in Materials Science and Engineering. His studies spanned from February 2016 to January 2019 in Taipei, Taiwan.He earned his MSc. in Inorganic Chemistry from Addis Ababa University, completing his degree between 2010 and December 2011 in Addis Ababa, Ethiopia.Tolesa Fita Chala obtained his Bachelor’s degree in Chemistry from Dire Dawa University, where he studied from 2007 to 2009 in Dire Dawa, Ethiopia.

Experience:

Dr. Tolesa Fita Chala currently serves as the Director of the School of Graduate Studies (SGS) and an Assistant Professor in the Department of Chemistry at Mattu University, Ethiopia. In this role, he oversees the graduate programs, ensuring academic excellence and fostering an environment conducive to advanced research and learning. His responsibilities also include mentoring graduate students, developing curriculum, and enhancing the quality of education within the department. Dr. Chala is actively involved in various committees at the university, college, and department levels, contributing significantly to institutional development. He also engages in diverse research projects and community service activities, demonstrating his commitment to both academic and societal advancement.Prior to his current position, Dr. Chala served as the Coordinator of the School of Graduate Studies at Mattu University. During his tenure, he played a crucial role in managing the graduate programs, facilitating effective communication between students and faculty, and ensuring the smooth operation of the SGS. His leadership and organizational skills were instrumental in the successful execution of numerous academic initiatives and research activities. Dr. Chala’s active participation in various university committees and his involvement in research and community services underscored his dedication to enhancing the academic environment and contributing to the broader community.

Skills:

Advanced Scientific Knowledge: Expertise in Advanced Inorganic Chemistry, Advanced Physical Chemistry, Advanced Analytical Chemistry, Advanced Organic Chemistry, Biochemistry, Quantum Chemistry, Computational Chemistry, and Analytical Methods of Inorganic Chemistry.,Communication and Teaching: Proficient in English writing and communication skills, with confidence in public speaking and leading.,Technical Skills: Skilled in operating and interpreting data from advanced instruments such as XRD, XPS, Raman Spectroscopy, CV, NMR, HPLC, UV-Visible spectroscopy, IR, TGA, SEM, TEM, and AAS.,Software Proficiency: Extensive knowledge of standard office software, Photoshop, ChemDraw, SPSS, and Gaussian software.,Organizational Skills: Efficient, organized, reliable, fast learner, highly motivated, and capable of meeting important targets in high-pressure environments.,Adaptability: Flexible and adaptive to different situations, cultures, and environments.,Teaching Enhancement: Focused on integrating lecture demonstrations and multimedia efficiently without increasing the workload of students and enhancing training programs for better learning outcomes.

Awards :

Dr. Tolesa Fita Chala has been recognized for his contributions to research and academia, as evidenced by his numerous publications in prestigious journals and his active participation in international conferences. Specific awards and recognitions have not been listed but can be inferred from his extensive research output and professional roles.

Research Focus:

Dr. Chala’s research primarily focuses on the synthesis and characterization of innovative materials, particularly in the field of nanotechnology. He collaborates with researchers across various disciplines to develop new materials with enhanced properties for applications in photothermal conversion, photocatalysis, and antimicrobial activity. His work aims to discover and optimize materials for environmental and biomedical applications, among others.

Conclusion:

Dr. Tolesa Fita Chala’s extensive and impactful research makes him an exemplary candidate for the Best Researcher Award. His innovative contributions to [specific field] have not only advanced scientific knowledge but have also paved the way for practical applications that benefit society. His dedication to mentoring the next generation of researchers and his commitment to collaborative work further highlight his suitability for this prestigious recognition. Dr. Chala’s outstanding achievements and his continued drive for excellence underscore his status as a leading figure in his field, making him a deserving recipient of the Best Researcher Award.

Publications :

  • Synthesis and Purification of Silver Nanowires:
    • Molla Bahiru Gebeyehu, Tolesa Fita Chala, Shao-Yen Chang, Chang-Mou Wu, Jiunn-Yih Lee. “Synthesis and highly effective purification of silver nanowires to enhance transmittance at low sheet resistance with simple polyol and scalable selective precipitation method.” RSC Advances, 2017. DOI: 10.1039/C7RA00238F.

 

  • Photothermal Conversion Properties:
    • Tolesa Fita Chala, Chang-Mou Wu, Min-Hui Chou, Molla Bahiru Gebeyehu, Kuo-Bing Cheng. “Highly efficient near infrared photothermal conversion properties of reduced tungsten oxide/polyurethane nanocomposites.” Nanomaterials, 2017. DOI: 10.3390/nano7070191.

 

  • Photothermal Material for Water Evaporation:
    • Tolesa Fita Chala, Chang Mou Wu, Min-Hui Chou, Zhen-Lin Guo. “Melt Electrospun Reduced Tungsten Oxide/Polylactic Acid Fiber Membranes as a Photothermal Material for Light-Driven Interfacial Water Evaporation.” ACS Applied Materials & Interfaces, 2018. DOI: 10.1021/acsami.8b07434.

 

  • Pyroelectric Generator for Energy Harvesting:
    • Chang Mou Wu, Min-Hui Chou, Tolesa Fita Chala, Ri-Ichi Murakami. “Infrared-driven Poly(vinylidene difluoride)/tungsten oxide pyroelectric generator for non-contact energy harvesting.” Composites Science and Technology, 2019. DOI: 10.1016/j.comsciitech.2019.05.004.

 

  • Photocatalysis with Nanocomposites:
    • Tolesa Fita Chala, Chang-Mou Wu, Kebena Gebeyehu Motora. “RbxWO3/Ag3VO4 Nanocomposites as Efficient Full-Spectrum (UV, Visible, and Near Infrared) Photocatalysis.” Journal of the Taiwan Institute of Chemical Engineers, 2019. DOI: 10.1016/j.jtie.2019.06.016.

 

  • Antibacterial and Deodorization Activity:
    • Kebena Gebeyehu Motora, Chang-Mou Wu, Ting-Zhen Xu, Tolesa Fita Chala, Chiu-Chun Lai. “Photocatalytic, antibacterial, and deodorization activity of recycled triacetate cellulose nanocomposites.” Materials Chemistry and Physics, 2020. DOI: 10.1016/j.matchemphys.2019.122260.

 

  • Photothermal Responsive Membranes:
    • Saba Naseem, Chang Mou Wu, Tolesa Fita Chala. “Photothermal responsive tungsten bronze/recycled cellulose triacetate porous f
    • iber membranes for efficient light-driven interfacial water evaporation.” Solar Energy, 2019. DOI: 10.1016/j.solener.2019.10.084.

 

  • Efficient Photocatalytic Activity:
    • Kebena Gebeyehu Motora, Chang-Mou Wu, Tolesa Fita Chala, Min-Hui Chou, Chung-Feng Jeffrey Kuo, Pankaj Koinkar. “Highly efficient photocatalytic activity of Ag3VO4/WO2.72 nanocomposites for the degradation of organic dyes from the ultraviolet to near-infrared regions.” Applied Surface Science, 2020. DOI: 10.1016/j.apsusc.2020.145618.

 

  • Green Synthesis and Antimicrobial Activity:
    • Yobsan Likasa Tiki, Leta Deressa Tolesa, Ardila Hayu Tiwikrama, Tolesa Fita Chala. “Ginger (Zingiber officinale)-Mediated Green Synthesis of Silver-Doped Tin Oxide Nanoparticles and Evaluation of Its Antimicrobial Activity.” ACS Omega, 2024. DOI: 10.1021/acsomega.3c07855.

 

  • Copper Oxide Nanoparticles:
    • Mekides Dinka Moroda, Leta Deressa Tolesa, Ardila Hayu Tiwikrama, Tolesa Fita Chala. “Green synthesis of copper oxide nanoparticles using Rosmarinus officinalis leaf extract and evaluation of its antimicrobial activity.”

 

 

 

Igor Artyukov | Carbon composites| Best Researcher Award

Dr . Igor Artyukov | Carbon composites| Best Researcher Award

 Dr . Igor Artyukov ,P.N. Lebedev Physical Institute RAS,Russia

Dr. Igor Artyukov is a distinguished scientist at the P.N. Lebedev Physical Institute of the Russian Academy of Sciences (RAS) in Russia. Specializing in the field of physics, Dr. Artyukov’s research contributions span various areas within physical sciences. The P.N. Lebedev Physical Institute, renowned for its pioneering research in physics, provides a robust platform for his work. Dr. Artyukov’s affiliation with this prestigious institution highlights his standing in the scientific community and his commitment to advancing knowledge in his field.

 

Professional Profiles:

Scopus

Education 🎓

University: National Research Nuclear University MEPhI – Moscow Engineering & Physics Institute (Moscow, Russia)

  • Year of Graduation: 1988 (Honors Diploma)
  • Degree: M.Sc.
  • Faculty: Special Faculty of Physics (SFF)
  • Specialty: Solid State Physics and Quantum Electronics

University: National Research Nuclear University MEPhI – Moscow Engineering & Physics Institute (Moscow, Russia)

  • Year of Graduation: 1992
  • Degree: N/A (Post-graduate education diploma)
  • Specialty: Radiophysics

Management Training and Courses

  • Project Manager Training by the US Industry Coalition (USIC): Minsk, Belorussia, 1999.
  • Project Manager Training by the US Civil R&D Foundation (CRDF) and the International Science and Technology Center (ISTC): Moscow, 2001-2005 (on a regular basis).

Scientific Degree

Organization: P.N. Lebedev Physical Institute of the Russian Academy of Sciences (Moscow, Russia)

  • Degree: Ph.D.
  • Year: 1993
  • Specialty: Optics
  • Ph.D. Thesis: “X-ray Optics for Microscopy and Lithography”

Awards:

  • Honors Diploma: Graduation from the Moscow Engineering & Physics Institute, 1988.
  • Pavlov Award and Bronze Pin: International Academy of Sciences ISCD (Commission for Ecology and Healthcare, Munich, Germany), 2000.
  • Basov Award:
    • For “Development and application of the reflective optics for the wavelength range 35-60 nm” (P.N. Lebedev Physical Institute of the Russian Academy of Sciences), 2007.
    • For “Design and simulation of an X-ray beam for laser-electron generator in material and life sciences” (P.N. Lebedev Physical Institute of the Russian Academy of Sciences), 2017.
    • For “Direct and Inverse diffraction problems for in-vlines surfaces in application for X-ray microscopy and lithography” (P.N. Lebedev Physical Institute of the Russian Academy of Sciences), 2021.

Fields of Expertise:

Theoretical Studies:

  • Design and simulation of optical systems
  • Optical design of high-resolution optical systems for X-ray and EUV lithography and microscopy
  • Monte Carlo simulation of optical and physical processes
  • Development of laser-electron X-ray sources based on inverse Compton scattering
  • Development of X-ray/EUV reflective optical systems for scientific applications

Experimental Studies:

  • Investigation of biological and composite materials with methods of X-ray microtomography
  • X-ray fluorescence spectromicroscopy using synchrotron radiation
  • Soft X-ray/EUV imaging with laser plasma X-ray source and multilayer mirrors

Supervising:

  • K.M. Krymsky: M.Sc., Ph.D. student
  • S.A. Romanova: M.Sc., Ph.D. student
  • M.A. Zotova: M.Sc. student
  • K.V. Gorodnischev: M.Sc. student
  • N.N. Irtuganov: M.Sc, Ph.D. student
  • I.D. Mikheev: B.Sc. student
  • D.A. Paneke: B.Sc., M.Sc., Ph.D. student
  • A.A. Danilov: B.Sc., M.Sc., Ph.D. student

Publications 📚

    1. A. V. Vinogradov, I. A. Artyukov, S. S. Borisova, N. N. Zorev, I. V. Kozhevnikov, I. F. Mikhailov, S. I. Sagitov, and A. I. Fedorenko, “Investigation Of Superpolished Surfaces By X-Ray Scattering,” Proceedings Of SPIE – The International Society For Optical Engineering 1140, 490-501 (1989).
    2. I. Artyukov, A. Vinogradov, and I. Kozhevnikov, “Efficiency Of Grazing-Incidence Optics – The Spiral Collimator,” Applied Optics 30, 4154-4157 (1991).
    3. I. Artyukov, A. Vinogradov, And I. Kozhevnikov, “Maximum Efficiency Of Moving Incidence X-Ray Optics – Spiral Collimators,” Izvestiya Akademii Nauk Sssr Seriya Fizicheskaya 55, 824-828 (1991).
    4. I. Artyukov, L. Balakireva, F. Bijkerk, A. Vinogradov, N. Zorev, I. Kozhevnikov, V. Kondratenko, O. Ogurtsov, A. Ponomarenko, and A. Fedorenko, “Projection X-Ray-Lithography On The Basis Of Point Sources,” Kvantovaya Elektronika 19, 114-127 (1992).
    5. I. Artyukov, A. Vinogradov, And S. Suckewer, “Ray Tracing Computer-Simulation For X-Ray Applications,” In Ultrashort-Wavelength Lasers (1992), Pp. 161-165.
    6. I. A. Artyukov, A. I. Fedorenko, V. V. Kondratenko, S. A. Yulin, And A. V. Vinogradov, “Soft X-Ray Submicron Imaging Experiments With Nanosecond Exposure,” Optics Communications 102, 401-406 (1993).
    7. B. Alaudinov, I. Artyukov, V. Asadchikov, A. Karabekov, And I. Kozhevniikov, “An Optical-Model Of A Surface In The X-Ray Range,” Kristallografiya 39, 605-616 (1994).
    8. I. Artioukov, I. Kozhevnikov, And F. Abeles, “Effects Of Near-Surface Transition Layer On X-Ray Reflection And Scattering,” In Optical Interference Coatings, Pts 1 And 2 (1994), Pp. 692-703.
    9. I. Artyukov, A. Vinogradov, A. Fedorenko, V. Kondratenko, S. Yulin, And S. Suckewer, “Soft-X-Ray Submicron Imaging Experiments With Nanosecond Exposure,” In Ultrashort Wavelength Lasers Ii (1994), Pp. 190-197.
    10. I. A. Artyukov, A. Y. Karabekov, I. V. Kozhevnikov, B. M. Alaudinov, And V. E. Asadchikov, “Experimental Observation Of The Near Surface Layer Effects On X-Ray Reflection And Scattering,” Physica B: Physics Of Condensed Matter 198, 9-12 (1994).
    11. I. Artioukov, A. Vinogradov, V. Asadchikov, Y. Kasyanov, R. Serov, A. Fedorenko, V. Kondratenko, and S. Yulin, “Schwarzschild Soft-X-Ray Microscope For Imaging Of Nonradiating Objects,” Optics Letters 20, 2451-2453 (1995).
    12. I. A. Artioukov And I. V. Kozhevnikov, “Effects Of Near-Surface Transition Layer On X-Ray Reflection And Scattering,” In Proceedings Of SPIE – The International Society For Optical Engineering, 1995), 154-175.
    13. I. A. Artyukov, V. E. Asadchikov, A. V. Vinogradov, Y. S. Kas?Yanov, V. V. Kondratenko, R. V. Serov, A. I. Fedorenko, And S. A. Yulin, “Reflective Soft X-Ray Microscope For The Investigation Of Objects Illuminated By Laser-Plasma Radiation,” Quantum Electronics 25, 919-922 (1995).
    14. I. A. Artioukov, V. E. Asadchikov, And I. V. Kozhevnikov, “Effects Of A Near-Surface Transition Layer On X-Ray Reflection And Scattering,” Journal Of X-Ray Science And Technology 6, 223-243 (1996).
    15. I. A. Artyukov, A. V. Vinogradov, V. V. Kondratenko, A. I. Fedorenko, And S. A. Yulin, “Soft X-Ray Imaging Of Submicron Structures,” Russian Microelectronics 25, 48-53 (1996).