Rohit Yadav | High energy physics | Best Researcher Award

Mr. Rohit Yadav | High energy physics | Best Researcher Award

National Institute of Technology Warangal | India

Rohit Yadav is a Research Scholar at the National Institute of Technology (NIT), Warangal, India, specializing in hybrid supercapacitors and electrode materials for energy storage systems. His research focuses on designing and developing high-performance, eco-friendly supercapacitors aimed at advancing electric vehicles (EVs) and promoting green energy solutions. Rohit’s work is essential for the sustainable energy revolution and has already contributed significantly to renewable energy storage and smart grid applications.

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Early Academic Pursuits 🎓

Rohit completed his M.Sc. in Physics in 2020 from the Malviya National Institute of Technology, Jaipur, India. His dissertation focused on studying cathode materials for metal-air batteries, laying a strong foundation for his later work in advanced energy storage systems. His academic journey provided a deep understanding of material science and electrochemical processes, which continues to shape his innovative approach to supercapacitor research.

Professional Endeavors 🔬

As a Program Committee Member for the IEMDST 2024 Conference, Rohit played a crucial role in organizing and overseeing a global scientific event. Additionally, he served as the General Secretary of the Physics Society at NIT Warangal in 2023, organizing scientific talks and coordinating weekly research presentations. His leadership and collaboration in these roles underscore his commitment to fostering scientific dialogue and promoting academic growth in the scientific community.

Contributions and Research Focus 🔍

Rohit’s research interests span across the development of hybrid supercapacitors, focusing on the synthesis and characterization of novel electrode materials. His work directly impacts the advancement of energy storage systems for electric vehicles and renewable energy solutions. By enhancing the performance of supercapacitors with eco-friendly materials like mesoporous strontium titanate and activated carbon derived from natural biomass, he contributes to sustainable, efficient energy storage solutions. His dedication to green energy applications marks a crucial intersection of technology and environmental impact.

Research Skills 🛠️

Rohit is highly skilled in synthesis techniques such as sol-gel and hydrothermal methods for creating novel electrode materials. His expertise includes electrochemical characterization, materials optimization, and nanomaterial design, which are key in developing high-performance energy storage systems. Additionally, he is proficient in advanced analytical techniques, ensuring that his materials meet the rigorous demands of sustainable energy solutions.

Awards and Honors 🏆

Rohit’s dedication and hard work have been recognized through several accolades:

  • Best Paper Award – 2023: For his exceptional paper presented at an international conference.
  • Position Certificate in Mini Marathon – 2024: A testament to his balanced and disciplined approach to both academic and personal growth.

These honors highlight his outstanding contributions to the field of energy storage and his commitment to excellence in both academic and extracurricular endeavors.

Legacy and Future Contributions 🚀

Rohit’s long-term vision is to push the boundaries of hybrid supercapacitor technology and advanced electrode materials to further enhance energy storage systems for electric vehicles and renewable energy grids. His work is poised to play a crucial role in the global transition to sustainable energy solutions, and he aspires to continue contributing to green technologies that benefit both society and the environment.

Publications Top Notes

Synthesis and Electrochemical characterization of activated porous Carbon Derived from Walnut shells as an Electrode material for symmetric Supercapacitor Application

  • Authors: R Yadav, N Macherla, K Singh, K Kumari
    Journal: Engineering Proceedings 59 (1), 175
    Year: 2024

Structural-Morphological Insights into Optimization of Hydrothermally Synthesized MoSe2 Nanoflowers for Improving Supercapacitor Application

  • Authors: P Yadav, R Yadav, J Pani, RM Singh, D Singh, K Kusum, H Borkar, …
    Journal: Dalton Transactions
    Year: 2025

Temperature-dependent hydrothermal processing of WS2 nanorods with controlled growth morphology, crystallography and optical properties

  • Authors: DS Ahlawat, D Singh, R Yadav, K Kumari, H Borkar, J Gangwar
    Journal: Materials Letters 377, 137386
    Year: 2024

Electrochemical analysis of sol-gel and hydrothermal synthesized mesoporous strontium titanate spherical nanoparticles as electrode material for high-performance flexible supercapacitors

  • Authors: R Yadav, R Banoth, K Singh, H Borkar, K Kumari
    Journal: Materials Chemistry and Physics 328, 130004
    Year: 2024

Novel industrial biomass derived materials for super capacitor application in powering up electronic gadgets

  • Authors: P Yadav, PA Azeem, S Patel, G Mahar, R Yadav, H Borkar
    Journal: Journal of Energy Storage 97, 112653
    Year: 2024

 

 

Zhihu Yang | Machine Learning in Physics | Best Researcher Award

Dr. Zhihu Yang | Machine Learning in Physics | Best Researcher Award

Xidian University | China

Zhihu Yang is an Associate Professor at Xidian University, where he has been a faculty member at the Center for Complex Intelligent Networks since 2014. Dr. Yang received his B.Eng. in Automation from Xidian University in 2009, followed by a PhD in Pattern Recognition and Intelligent Systems from the same institution in 2014. During 2017-2018, he furthered his academic journey as a visiting scholar at the Australian National University. His research primarily focuses on the evolutionary dynamics of altruistic behavior on complex networks, contributing to the understanding of cooperation, strategy evolution, and fairness in social dilemmas.

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Early Academic Pursuits

Dr. Yang’s academic journey began at Xidian University, where he completed his Bachelor’s degree in Automation. His strong interest in complex systems and network dynamics led him to pursue a PhD in Pattern Recognition and Intelligent Systems at the same institution. His doctoral research provided a foundation for his ongoing work in the evolution of cooperation and game theory, shaping his future research endeavors. During his time as a student, he exhibited a deep curiosity about social behavior, which has been a constant theme in his subsequent work.

Professional Endeavors

After earning his PhD, Dr. Yang joined the Center for Complex Intelligent Networks at Xidian University, where he continues to contribute to cutting-edge research. His work involves interdisciplinary research at the intersection of complex networks, game theory, and social behavior. His time as a visiting scholar at the Australian National University allowed him to engage with global scholars, broadening his perspective and enriching his research. Dr. Yang’s academic career is marked by a continuous pursuit of excellence in the study of cooperation dynamics and network evolution.

Contributions and Research Focus

Dr. Yang’s research has made significant contributions to understanding the evolutionary dynamics of altruistic behavior in complex networks. Some of his most notable findings include the discovery of strategy oscillations in two-strategy games and novel insights into the interplay between role evolution and strategy evolution in spatial ultimatum games. His studies on the spatial Prisoner’s Dilemma, random migration mechanisms, and the impact of conformity on cooperation have influenced how we understand cooperation in dynamic social systems. His work offers general mechanisms for promoting fairness and cooperation across networked societies.

Research Skills 🔬

Dr. Yang possesses strong expertise in complex system modeling, evolutionary game theory, and network dynamics. His research often involves sophisticated mathematical modeling, computational simulations, and reinforcement learning to explore cooperation and strategy evolution. His skills in data analysis, algorithm design, and network theory allow him to tackle interdisciplinary challenges, making him a leading expert in understanding human behavior through mathematical and computational lenses.

Teaching Experience 📖

Dr. Yang has been actively involved in teaching and mentoring students at Xidian University. As an associate professor, he teaches courses related to complex networks, pattern recognition, and intelligent systems. He has also supervised numerous graduate students, guiding them in their research and fostering their development as independent scholars. His ability to explain complex concepts and inspire critical thinking has made him a respected educator in his field.

Legacy and Future Contributions 🚀

Dr. Yang’s legacy in the field of evolutionary dynamics is marked by his groundbreaking contributions to the understanding of cooperation and strategy evolution. His innovative work continues to shape the study of social networks and altruism in complex systems. Looking forward, Dr. Yang’s future research is likely to explore the real-world applications of his findings, especially in social behavior and networked systems. He is poised to make further contributions to the integration of AI and machine learning with evolutionary game theory, potentially influencing fields like behavioral economics, social policy, and networked decision-making.

Publications Top Notes

The double-edged sword effect of conformity on cooperation in spatial Prisoner’s Dilemma Games with reinforcement learning

  • Authors: Pai Wang, Zhihu Yang
    Journal: Chaos, Solitons & Fractals
    Year: 2024

Role polarization and its effects in the spatial ultimatum game

  • Authors: Zhihu Yang
    Journal: Physical Review E
    Year: 2023

Random migration with tie retention promotes cooperation in the prisoner’s dilemma game

  • Authors: Zhihu Yang, Liping Zhang
    Journal: Chaos: An Interdisciplinary Journal of Nonlinear Science
    Year: 2023

A Migration Mechanism With Neighbor Retention Promotes Cooperation

  • Authors: Liping Zhang, Zhihu Yang
    Journal: 2022 China Automation Congress (CAC)
    Year: 2022

Oscillation and burst transition of human cooperation

  • Authors: Zhihu Yang, Zhi Li
    Journal: Nonlinear Dynamics
    Year: 2022

 

 

Roza Avetisyan | Nuclear Physics | Women Researcher Award

Dr. Roza Avetisyan | Nuclear Physics | Women Researcher Award

A.I. Alikhanyan National Science Laboratory | Armenia

Dr. Roza Avetisyan is a distinguished researcher in the field of nuclear physics, currently serving as the Head of the Low Energy Nuclear Physics Group at the A.I. Alikhanyan National Science Laboratory in Yerevan, Armenia. With a Ph.D. in Physics, Avetisyan’s work spans over a decade of research and scientific contributions, particularly in nuclear reactions, medical isotopes, and accelerator-based physics.

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🎓 Early Academic Pursuits

Dr. Avetisyan’s academic journey began at Yerevan State University, where she earned her B.S. and M.S. degrees in Physics (2005-2011). Her early research focused on GEANT4 simulations and the spontaneous radiation of electron beams, setting the foundation for her future work in nuclear physics. She continued her academic trajectory by joining the A.I. Alikhanyan National Science Laboratory for her Ph.D., completing her dissertation in 2022 on “Study of the excitation functions and isomer ratios of proton and gamma-induced reactions,” under the mentorship of I.A. Kerobyan.

💼 Professional Endeavors

Roza’s career spans multiple roles at the A.I. Alikhanyan National Science Laboratory (AANL) in Armenia. Since 2012, she has evolved from an engineer physicist to the head of the Low Energy Nuclear Physics Group (since January 2023). She has also held key positions like Science Secretary and Researcher within the same group, contributing to various nuclear physics projects and fostering scientific collaboration. Her contributions extend to international partnerships, as she has also worked as a laboratory research visitor at the University of Notre Dame (2013).

🔬 Contributions and Research Focus

Dr. Roza Avetisyan’s research is primarily focused on low-energy nuclear physics, proton and gamma-induced reactions, and medical isotopes. Her key contributions include the investigation of excitation functions and isomer ratios in nuclear reactions, as well as the production of medical isotopes like 186gRe. Through her leadership at AANL, she has advanced studies on applied gadolinium radioisotopes, neutron flux formation, and isotope production using cyclotron beams. Her research plays a critical role in nuclear medicine and radiation safety.

Academic Cites 📑

Dr. Roza Avetisyan has authored multiple influential papers in nuclear physics, which have been cited in leading journals such as Nucl. Phys. A, The European Physical Journal A, and NIM B. Notable publications include works on the formation of 180mTa and the production of 186gRe. Her research on proton-induced reactions and excitation functions contributes to the understanding of nuclear processes and their applications in various sectors, including nuclear energy and medical isotope production.

👨‍🏫 Teaching Experience

While her primary focus is research, Dr. Avetisyan’s role as a research mentor and group leader at the AANL has involved training and guiding the next generation of physicists. Her participation in international workshops and summer schools reflects her commitment to educating young scientists in nuclear physics and accelerator technology.

Research Skills 🧠

Roza possesses advanced skills in nuclear reaction analysis, isotope production, and simulation tools like TALYS, EMPIRE, and GEANT4. She is proficient in using these tools to model and predict nuclear processes, which is critical for her research in low-energy nuclear physics and nuclear medicine. Furthermore, her experience with cyclotron facilities and bremsstrahlung beams enhances her research capabilities in both theoretical and applied physics.

Technical Skills ⚙️

Roza is well-versed in a range of technical skills essential for her research, including programming languages and simulation software. She is proficient in TALYS, EMPIRE, and SRIM/TRIM, which are crucial for simulating nuclear reactions and material interactions. Her proficiency extends to data analysis using OriginPro and SketchUp, enhancing her research in both theoretical calculations and experimental setups.

Legacy and Future Contributions 🌟

Roza Avetisyan’s legacy is firmly rooted in her contributions to low-energy nuclear physics and medical isotope research. As she continues to lead AANL’s Low Energy Nuclear Physics Group, her future work will likely focus on advancing nuclear spectroscopy and expanding the use of applied isotopes in medical and industrial applications. With her scientific leadership, Roza is poised to make lasting contributions to both scientific communities and nuclear medicine, potentially revolutionizing the way medical treatments are delivered using isotopes.

Top Noted Publications 

 

 

Mahdieh Ghaseminejad | High energy physics | Editorial board member

Dr. Mahdieh Ghaseminejad | High energy physics | Editorial board member

Yazd University | Iran

Dr. Mahdieh Ghasemi Nejad is a flexible and experienced researcher with a strong background in industrial, experimental, and theoretical sciences. She has specialized expertise in micro and nanomaterials, polymers, and nuclear physics. As an academic researcher and university lecturer, she combines her profound knowledge with practical experience in product design and development. Dr. Ghasemi Nejad is a strong communicator, proficient in teamwork, and excels at taking on new challenges and initiatives.

👨‍🎓 Profile

🎓 Early Academic Pursuits

Dr. Ghasemi Nejad embarked on her academic journey with a Bachelor’s degree in Solid State Physics from Kerman University (2005-2009), where she excelled in her studies. She then pursued a Master’s degree in Nuclear Physics at Payam Noor University in Mashhad (2009-2011). Her academic career culminated with a Ph.D. in Nuclear Physics from Yazd University (2017-2021), where she furthered her expertise in the interdisciplinary fields of nuclear and material sciences.

🔬 Professional Endeavors

Currently, Dr. Ghasemi Nejad serves as the Managing Director of Gita Baspar Co. in Yazd, where she is involved in consulting and cooperation on polymer production and product design. Alongside this, she has had an extensive career as a university lecturer at both Azad University and Payam Noor University, contributing to higher education and mentoring young researchers. Dr. Ghasemi Nejad also held the position of Head of Design and Development Unit at Nano Sanjesh Yaran Mohit Co., where she was responsible for product innovation and supervising production processes from 2017 to 2022.

🔬 Contributions and Research Focus

Dr. Ghasemi Nejad’s research revolves around micro and nanomaterials, polymers, and nuclear physics, with a particular focus on the shielding properties of materials against radiation and antibacterial applications. Some of her key research topics include:

  • X-ray attenuation properties of composite materials such as PbO and graphene.
  • The shielding performance of materials like EPVC (lead-free) and high-Z oxide fibers.
  • Investigating the antibacterial properties of polymeric composites containing nanoparticles such as Molybdenum Trioxide.
  • Monte Carlo simulations for radon measurement in water and X-ray attenuation models.

Her work is instrumental in both theoretical and applied aspects of material science, particularly in radiation protection and nanotechnology.

🌍 Impact and Influence

Dr. Ghasemi Nejad has significantly contributed to the fields of nuclear physics, polymer science, and nanomaterials. Her publications and conference papers have made her a recognized figure in the scientific community, particularly in radiation shielding and nanomaterial applications. Her research is highly influential in both academic circles and industrial sectors, where her work in polymer production and product design is shaping innovative solutions for radiation protection and nanocomposites.

💻 Computer Skills

  • Microsoft Office Suite (Word, Excel, PowerPoint)
  • MCNP and GEANT4 for nuclear simulations
  • MATLAB for data analysis
  • Origin Pro for scientific plotting
  • ChemDraw and OPUS for chemical structure drawing
  • Prezi and Image J for presentations and image processing

Her diverse computer skills ensure effective data analysis, modeling, and presentation in both academic and industrial contexts.

🏆 Awards and Honors

Dr. Ghasemi Nejad has been recognized for her scientific achievements throughout her career, including:

  • First place in the Ninth Scientific Festival of Students (Scientific Olympiad in Physics), 2009.
  • Ranked first among undergraduate students at Kerman University in 2009.
  • Patent Declaration for an X-ray protective polymer layer in 2020.

These recognitions emphasize her commitment to scientific excellence and innovation.

Top Noted Publications

  • The effect of modified Tin oxide on X-ray attenuation: An experimental and theoretical study
    Authors: Ghasemi-Nejad, M., Gholamzadeh, L., Adeli, R., Shirmardi, S.P.
    Journal: Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms
    Year: 2024
  • Investigation of Antibacterial Activity of Synthesized PVC Composites Containing Molybdenum Trioxide Nano Particles
    Authors: Ghasemi-Nejad, M., Gholamzadeh, L., Adeli, R., Shirmardi, S.P.
    Journal: Journal of Surface Investigation
    Year: 2023
  • A comprehensive study of the antibacterial and shielding properties of micro and nano-EPVC lead-free shields
    Authors: Ghasemi-Nejad, M., Gholamzadeh, L., Adeli, R., Shirmardi, S.P.
    Journal: Physica Scripta
    Year: 2022
  • A study of the shielding performance of fibers coated with high-Z oxides against ionizing radiations
    Authors: Gholamzadeh, L., Asari-Shik, N., Aminian, M.K., Ghasemi-Nejad, M.
    Journal: Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
    Year: 2020

 

Xuepeng Gao | High energy physics | Best Researcher Award

Mr. Xuepeng Gao | High energy physics | Best Researcher Award

Key Laboratory of Safety Mining in Deep Metal Mines, Ministry of Education, Northeastern University | China

Xuepeng Gao, a Doctoral Candidate at Northeastern University, specializes in sensor applications to study and mitigate coal mine tremors and rock bursts. With 4 publications in EI/SCI journals and 4 patents applied, his research addresses global challenges in mining safety. He has received multiple awards, including the Silver Medal at the 8th China International “Internet+” Innovation and Entrepreneurship Competition (2023).

👨‍🎓 Profile

🎓 Early Academic Pursuits

Xuepeng Gao completed his bachelor’s and master’s degrees at Shandong University of Science and Technology, laying a strong foundation in mining safety technologies. Currently, he is pursuing his Ph.D. at the Key Laboratory of the Ministry of Education for Safe Mining of Deep Metal Mines at Northeastern University, under the guidance of academician Yishan Pan.

🏛️ Professional Endeavors

Xuepeng’s research revolves around the mechanism analysis and prevention of coal mine tremors. His work integrates signal monitoring and microseismic sensor technology to address the unpredictable nature of mining-induced disasters.

🔬 Contributions and Research Focus

His innovative efforts include:

  • Signal Analysis: Differentiating types of roof rock fractures using signal parameters.
  • Microseismic Sensors: Analyzing waveforms to formulate prevention strategies for mine earthquakes.
  • Dynamic Disaster Prevention: Pioneering the use of energy methods to monitor and predict rock bursts.

🌍 Impact and Influence

Xuepeng’s contributions extend globally, addressing the unpredictable challenges of mining tremors and rock bursts. His participation in competitions like the 8th China International “Internet+” College Students’ Innovation and Entrepreneurship Competition showcases his leadership in innovative solutions for mining safety.

🛠️ Technical Skills:

  • Sensor Applications: Expertise in microseismic sensor technologies for monitoring mining tremors and rock bursts.
  • Signal Analysis: Proficient in analyzing waveform characteristics to understand mine tremor signals.
  • Prevention Strategies: Developed prevention and control methods for mining earthquakes, based on empirical data.

🔗 Collaborations and Future Directions:

Though Xuepeng has not yet published books or engaged in significant international collaborations, his contributions to research and development in the sensor applications field position him as a future leader in mining safety. His research lays the groundwork for further innovation and collaboration with industry leaders and academic institutions.

Publications

 

 

Lin Cheng | High energy physics | Best Researcher Award

Mrs. Lin Cheng | High energy physics | Best Researcher Award

North university of China, China

👨‍🎓 Profile

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📚 Early Academic Pursuits

Lin Cheng began their academic journey with a BSc in Information and Communication Engineering from the North University of China in 2010. Demonstrating a strong foundation in engineering, they advanced to earn both MSc (2013) and PhD (2021) degrees at the Key Laboratory for Physical Electronics and Devices, Xi’an Jiaotong University, a hub for innovation in photonics and electronic sciences. Lin’s doctoral studies were pivotal, focusing on cutting-edge research in light modulation and surface plasmon technologies, laying the groundwork for their future contributions.

🌟 Professional Endeavors

As an Associate Professor at the School of Semiconductor and Physics, North University of China since 2021, Lin Cheng has become a leading academic in photonics and metamaterials. Their international experience includes a visiting student tenure at the University of Ottawa, Canada, from September 2019 to October 2020, where they collaborated on advanced light propagation control techniques.

🔬 Contributions and Research Focus

Lin’s research is centered on metasurfaces, surface plasmon applications, nonlinear optics, epsilon-near-zero materials, and multi-wave mixing in Rubidium, contributing significantly to fields like light modulation and color display technologies. Their work has advanced the understanding of nonlinear antennas, tunable meta-absorbers, and innovative approaches to beam manipulation.

🌍 Impact and Influence

Lin Cheng’s work has made a significant impact in both academia and applied physics. Her published journal papers, including “Superscattering, Superabsorption, and Nonreciprocity in Nonlinear Antennas” (ACS Photonics, 2021), have become vital resources for researchers worldwide. Her studies on plasmonic colors and dynamic tunable radiation have influenced emerging metamaterial technologies, inspiring innovations in optics, and photonics.

📊 Academic Citations

With a robust portfolio of 10 journal publications, Lin’s work has earned numerous citations, reflecting the scientific community’s recognition of their contributions to optics and photonics. Their most notable paper, Superscattering, Superabsorption, and Nonreciprocity in Nonlinear Antennas, published in  ACS Photonics (2021), showcases their innovative approach to solving complex optical challenges.

💻 Technical Skills

Lin Cheng excels in cutting-edge simulation and modeling tools such as COMSOL and MATLAB for optical designs. Her technical expertise spans plasmonic structure fabrication, multi-wave mixing analysis, and epsilon-near-zero metamaterial development, making her a leader in physics, optical and photonic research.

🏆 Legacy and Future Contributions

With four funded projects totaling RMB 490,000, Lin is poised to make transformative contributions to light modulation and metasurface technologies. Their National Natural Science Foundation of China grant (2024–2026) supports research into nonlinear metasurfaces, signaling their commitment to shaping the future of photonics. Lin’s legacy will be defined by their dedication to advancing optical sciences and mentoring future researchers. 

Top Noted Publications

Superscattering, Superabsorption, and Nonreciprocity in Nonlinear Antennas
  • Authors: Lin Cheng, Rasoul Alaee, Akbar Safari, Mohammad Karimi, Lei Zhang, Boyd Robert
    Journal: ACS Photonics
    Year: 2021
Manipulation of a Ring-shaped Beam via Spatial Self- and Cross-phase Modulation in Lower Intensity
  • Authors: Lin Cheng, Zhaoyang Zhang, Lei Zhang, Danmeng Ma, Gaoguo Yang, Tian Dong, Yanpeng Zhang
    Journal: Phys. Chem. Chem. Phys.
    Year: 2019
Extrinsic Polarization-enabled Covert Plasmonic Colors using Aluminum Nanostructures
  • Authors: Lin Cheng, Kun Wang, Jianyong Mao, Xiao Ming Goh, Zhiqin Chu, Yanpeng Zhang, Lei Zhang
    Journal: Ann. Phys. (Berl.)
    Year: 2019
Competition and Energy Transfer between Forward and Backward Four-Wave Mixing via Atomic Coherence
  • Authors: Lin Cheng, Yaling Tian, Yize Liu, Yanpeng Zhang, Kangkang Li, Yang Liu, Ruizhou Liu
    Journal: IEEE J. Quantum Electron.
    Year: 2017
Modulation of the High-order Lagurre-Gaussian Beam in Dressing Four-Wave Mixing
  • Authors: Lin Cheng, Xing Liu, Yanyong Sun, Kun Wang, Lei Zhang, Yanpeng Zhang
    Journal: IEEE J. Quantum Electron.
    Year: 2018
Nonlinear Antennas with Tunable Radiation Patterns in Near Infrared
  • Authors: Lin Cheng, Lei Zhang
    Journal: Journal of Synthetic Crystals
    Year: 2021

 

 

 

Azeez Barzinjy | High energy physics | Editorial Board Member

Prof. Dr. Azeez Barzinjy | High energy physics | Editorial Board Member

Academic Staff at Soran University, Iraq

Prof. Dr. Azeez A. Barzinjy is a highly accomplished Materials Science expert and a Full Professor at Soran University in the Kurdistan Region of Iraq. With a PhD in Materials Science from the University of Leicester, UK, Dr. Barzinjy has a broad background in Nanotechnology, Quantum Mechanics, and Nanomaterials. He has a robust publication track record and actively participates in international scientific communities. His research collaboration extends to projects in Materials Science, Nanotechnology, and Quantum fields. He has mentored over 50 BSc projects, supervised MSc theses, and served in editorial boards of various scientific journals. His work spans multiple international workshops, conferences, and committees, reflecting his global influence in the field. He also engages in calligraphy, reading, and travelling.

Profile

Early Academic Pursuits 🎓

Prof. Dr. Azeez A. Barzinjy began his academic journey with a B.Sc. in Physics from the University of Salahaddin-Erbil, Iraq, between 1994 and 1998. This foundational education in Physics set the stage for his future pursuits in materials science and theoretical physics. Following his undergraduate studies, he completed two Master’s degrees: one in Superconducting Transmission Lines from Salahaddin University-Erbil (2002-2004) and another in Theoretical Physics at Old Dominion University, Virginia, USA (2008-2009). He later pursued a Ph.D. in Materials Science from the University of Leicester, UK (2011-2014), which marked a significant shift towards materials science and nanotechnology, fields in which he would later become a recognized expert.

Professional Endeavors 💼

Prof. Barzinjy’s career is marked by a combination of teaching, research, and advisory roles. His teaching career began as a Teaching Assistant in the Department of Physics at the University of Salahaddin in 1998, and he later served as a Teaching Staff for several years in various institutions, including TIU and Raparin University in Kurdistan. His teaching focuses on subjects like Quantum Mechanics, Nanotechnology, Materials Science, and Modern Physics, inspiring generations of students at undergraduate and graduate levels.He also holds the position of Researcher at the Scientific Research Center of Soran University, where he mentors several MSc and PhD students and advises over 60 BSc projects. His role extends to active participation in international scientific committees and organizing numerous conferences and workshops, strengthening the research community across Kurdistan and internationally.

Contributions and Research Focus 🔬

Prof. Barzinjy’s research primarily revolves around Materials Science, Nanotechnology, Quantum Mechanics, and Nanomaterials, with a strong emphasis on green synthesis and eco-nanotechnology. He has explored a variety of cutting-edge topics, including nanoparticles synthesis, electrodeposition, thin films, and the use of ionic liquids in materials science. His work in green nanotechnology stands out for focusing on environmentally friendly approaches to nanomaterials synthesis, an area that has gained increasing attention for its potential in reducing environmental impact.

Impact and Influence 🌍

Prof. Barzinjy’s impact stretches beyond his own research and teaching. He is part of several international advisory boards and scientific committees. Notably, he has been an active member of American Physical Society, Royal Society of Chemistry, and American Chemical Society, helping to shape the scientific community in both Iraq and abroad. He has also served on editorial boards for various international journals and review committees for leading academic publications in his field.His recent recognition as one of the top 2% scientists in the world in Materials Science by Stanford University (2023 and 2024) is a testament to the profound impact his research has had. His contributions are not only technical but also serve as a bridge between academia in the Kurdistan Region and the wider scientific world.

Academic Cites and Publications 📚

Prof. Barzinjy has published extensively, with notable books such as “Introduction to Analytical Mechanics” (2024) and contributions to Elsevier’s publication on eco-nanotechnology (2020). His work has garnered widespread citation in international academic journals, with particular focus on his research in superconducting transmission lines, thin films, and quantum mechanics. His authorship in LAP LAMBERT and Scholar’s Press further showcases his intellectual contributions to both theoretical and applied physics.His work has been instrumental in advancing the understanding of strip-transmission lines for superconductors, which has applications in modern electronics and communications.

Technical Skills 💻

Prof. Barzinjy is proficient in a range of technical skills that contribute to his success in both research and teaching. He is highly skilled in mathematical modeling and simulation, utilizing MATLAB, COMSOL Multiphysics, and Spartan for molecular modeling. His software expertise in Graph Pad Prism, Origin Pro, and Mathematica is crucial for data analysis and the development of theoretical models in nanotechnology and materials science.His hands-on experience with electrodeposition techniques, thin-film fabrication, and ionic liquids further enhances his capabilities, enabling him to lead projects that merge both theoretical and experimental research.

Teaching Experience 👨‍🏫

Prof. Barzinjy’s teaching experience spans over two decades, where he has been involved in educating students at various levels, from high school gifted students to MSc and PhD candidates. He has taught courses on Quantum Mechanics, Nanoscience, Materials Science, Modern Physics, and Thermodynamics. His approach to teaching emphasizes both theoretical depth and practical application, ensuring students are equipped with the tools necessary for both academic and professional success.Not only does he teach, but he actively advises and mentors graduate students, guiding them through research projects and thesis work. His involvement in the supervision of MSc and PhD students further solidifies his commitment to shaping the next generation of scientists and researchers.

Legacy and Future Contributions 🔮

Prof. Barzinjy has already established a remarkable legacy in the fields of Materials Science and Nanotechnology, particularly in the Kurdistan region and beyond. His focus on sustainable technologies and eco-nanotechnology places him at the forefront of the global push for more environmentally friendly innovations in science.

Top Noted Publications

Effects of gallic acid and quercetin on the structural, thermal, spectroscopic, in vitro biocompatibility and electronic properties of Au-based hydroxyapatite structure
  • Journal: Materials Chemistry and Physics
    Authors: Serhat Keser, Ahmet Dogan, Tankut Ates, Azeez A. Barzinjy, Burhan Ates, Suat Tekin, Suleyman Sandal, Rebaz Obaid Kareem, İmren Özcan, Niyazi Bulut et al.
    Year: 2024

Biosynthesis and antibacterial activity of ZnO nanoparticles using Buchanania obovata fruit extract and the eutectic-based ionic liquid

  • Journal: Nanotechnology
    Authors: Kadhim Qasim Jabbar, Azeez Abdullah Barzinjy
    Year: 2024

Green synthesis and characterization of Ag nanoparticles using fresh and dry Portulaca Oleracea leaf extracts: Enhancing light reflectivity properties of ITO glass

  • Journal: Micro & Nano Letters
    Authors: Azeez A. Barzinjy, Banaz Sh. Haji
    Year: 2024

Biosynthesis of Silver Nanoparticles at Various pH Values and their Applications in Capturing Irradiation Solar Energy

  • Journal: Recent Patents on Nanotechnology
    Authors: Vinos Mushir Faris, Azeez Abdullah Barzinjy, Samir Mustafa Hamad
    Year: 2024

Catalytic application of green-synthesized ZnO nanoparticles in the synthesis of 1H-pyrazolo[1,2-a]pyridazine-5,8-diones and evaluation of their anti-cancer properties

  • Journal: New Journal of Chemistry
    Authors: Soma Majedi, Faiq H. S. Hussain, Azeez A. Barzinjy, Maryam Hosseinpoor Tehrani, Farouq E. Hawaiz
    Year: 2023

Green Synthesis of ZnO/CuO Nanocomposites Using Parsley Extract for Potential In Vitro Anticoccidial Application

  • Journal: ACS Applied Bio Materials
    Authors: Samir Mustafa Hamad, Azeez Abdullah Barzinjy, Rafigh Raghda, Jalil Parwin, Mirzaei Yousef, Shaikhah Dilshad
    Year: 2023

Green tea extract mediated biosynthesis of lead oxide nanoparticles: characterization, and catalytical activity

  • Journal: Bioresource Technology Reports
    Authors: Safiya Jameel Piro, Samir Mustafa Hamad, Azeez Abdullah Barzinjy, Botan Jawdat Abdullah, Mustafa Saeed Omar, Shaikhah Dilshad
    Year: 2023

 

 

 

Cutting-edge Physics Research Award

Introduction to Cutting-edge Physics Research Award:

Embark on a journey of groundbreaking discoveries with the Cutting-edge Physics Research Award—an esteemed recognition celebrating individuals who have pushed the boundaries of knowledge, advancing the forefront of physics through their innovative research.

Eligibility:

Open to physicists, researchers, and scientists globally, this award is designed for individuals of all ages who have demonstrated exceptional research skills and have significantly contributed to the advancement of physics.

Qualification and Publications:

Applicants should hold a minimum of a master's degree in physics or a related field, showcasing a robust portfolio of publications that demonstrates the depth and impact of their cutting-edge research.

Requirements:

To be eligible, candidates must submit a detailed curriculum vitae, evidence of their research publications, and a summary of their innovative contributions to the field of physics.

Evaluation Criteria:

Entries will be evaluated based on the significance and impact of their research, the level of innovation, and the potential for future advancements in the realm of physics.

Submission Guidelines:

Detailed instructions for submission can be found on our official website, ensuring a smooth and transparent application process.

Recognition:

The recipient of the Cutting-edge Physics Research Award will be honored with a distinguished accolade, heightened visibility, and acknowledgment within the global physics and research communities.

Community Impact:

Beyond personal recognition, this award acknowledges the broader influence of the recipient's research, inspiring collaboration, innovation, and shaping the future of physics research.

Biography and Abstract:

Applicants are encouraged to provide a brief biography and an abstract summarizing their cutting-edge research, offering insights into their motivation, methodologies, and outcomes.

Supporting Files:

Submission should include supporting files, such as research papers, presentations, or any additional documentation that illustrates the cutting-edge nature of the candidate's contributions.

 

 

 

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