Lin Ge | Materials Science | Best Researcher Award

Prof. Lin Ge | Materials Science | Best Researcher Award

Nanjing Tech University | China

Author Profile

Orcid

šŸŒ± Early Academic Pursuits

Dr. Lin Geā€™s academic journey began at Nanjing Tech University, where he obtained his degrees, showcasing his early dedication to materials science. His academic excellence and curiosity led him to pursue advanced studies in materials engineering, with a specific focus on Solid Oxide Cells. During his time as a visiting scholar and postdoctoral researcher at Nanyang Technological University, he broadened his expertise, gaining valuable international exposure and engaging with advanced research methodologies.

šŸ”¬ Professional Endeavors

Currently, Dr. Lin Ge serves as an associate professor and the subdean of the College of Materials Science and Engineering at Nanjing Tech University. In this role, he not only advances his research but also mentors emerging engineers and scientists. He actively participates in significant projects funded by prestigious foundations, including the National Natural Science Foundation of China, the Natural Science Foundation of Jiangsu Province, and the China Postdoctoral Science Foundations, underscoring his contributions to advancing materials science.

šŸ“š Contributions and Research Focus

Dr. Geā€™s research primarily centers around Solid Oxide Cells, a field where he has authored over 60 scientific publications. His expertise in this area has positioned him as a notable contributor to the literature on materials engineering and energy storage. As a longstanding reviewer for various scientific journals, he continues to shape research standards in his field. Dr. Ge is also an active member of the Composite Material Society of Jiangsu Province, contributing to the materials science community on a broader scale.

šŸ† Accolades and Recognition

Dr. Lin Geā€™s work has earned him recognition within both academia and the scientific community. His funded research projects and extensive publications underscore his contributions, and his role as an annual reviewer for renowned journals, including Applied Catalysis B: Environmental and the Journal of Power Sources, is a testament to his respected expertise.

šŸŒ Impact and Influence

Through his research on Solid Oxide Cells, Dr. Ge has significantly impacted energy storage and environmental sustainability. His contributions to materials science extend beyond his publications, as his work on Solid Oxide Cells holds potential for future technological advancements in clean energy solutions. His influence is also reflected in his mentorship of students and peers, fostering an environment of innovation and intellectual curiosity.

šŸŒŸ Legacy and Future Contributions

Dr. Geā€™s dedication to materials science positions him as a forward-thinking leader in the field, paving the way for innovations in sustainable energy and advanced ceramics. As he continues to contribute through his research, mentorship, and publications, Dr. Ge is poised to leave a lasting legacy, inspiring future generations of scientists and engineers to explore the vast potential of materials science and its applications in addressing global challenges.

 

Publications


šŸ“„ Superior Durability and Activity of a Benchmark Tripleā€Conducting Cathode by Tuning Thermoā€Mechanical Compatibility for Protonic Ceramic Fuel Cells

  • Journal: Advanced Functional Materials
  • Year: 2024
  • Authors: Zhexiang Yu, Lin Ge, Qing Ni, Yifeng Zheng, Han Chen, Xingkai Zhou, Yaowei Mi, Bochang Shi, Xiaole Yu, Bangze Wu, et al.

šŸ“„ Solid Oxide Electrolyzer Positive Electrodes with a Novel Microstructure Show Unprecedented Stability at High Current Densities

  • Journal: Journal of Materials Chemistry A
  • Year: 2023
  • Authors: Qing Ni, Yu Li, Zongchao Zhu, Zhexiang Yu, Dong Xu, Xiaoming Hua, Yi Zhen, Lin Ge, Lei Bi

 

Zhi Zhou | Materials Science | Best Researcher Award

Prof. Zhi Zhou | Materials Science | Best Researcher Award

Hunan Agricultural University | China

Author Profile

Scopus

Orcid

Early Academic Pursuits šŸŽ“

Prof. Zhi Zhou's academic journey began with a Bachelorā€™s degree in Applied Chemistry from Hunan Agricultural University in 2005, followed by a Masterā€™s and then a Ph.D. in Applied Chemistry from Central South University in 2012. His passion for chemistry and its application in agriculture became a driving force behind his future research endeavors.

Professional Endeavors šŸ’¼

Prof. Zhouā€™s career spans significant roles in both academia and industry. After completing his studies, he worked as a Quality Engineer at Hunan Electronic Information Industry Group and then conducted postdoctoral research in the Netherlands and China. In 2014, he joined Hunan Agricultural University, where he quickly progressed through academic ranks to become a professor and the dean of the College of Excellent Engineers.

Contributions and Research Focus šŸ”¬

Prof. Zhou's research is dedicated to solving agricultural production challenges through interdisciplinary methods combining chemistry and materials science. His research areas include:

  • Luminescent Materials: Prof. Zhou has developed new fluorescent materials for agricultural applications, especially for plant growth.
  • Biochar Applications: His studies in biochar production and modification have shown promise in environmental management and soil remediation.
  • Tea Growth and Processing: He has investigated the impact of light on tea tree growth and quality during processing.
  • Smart Agriculture: Prof. Zhou's team explores advancements in agricultural robotics and automation.

Accolades and Recognition šŸ†

Prof. Zhou's achievements are widely recognized. He was awarded the Changsha 3635 Talent Introduction Program (2014), Hunan Province Hundred Talents Program (2017), and Shennong Youth Talent by the Ministry of Agriculture and Rural Affairs (2022). He has won prestigious awards, including:

  • The 2019 Hunan Science and Technology Progress Award, Second Prize
  • The 2022 Young Scientist Award from the China Environmental Society
  • Multiple Teaching Achievement Awards from Hunan Agricultural University

Impact and Influence šŸŒ

With over 5,700 citations and an H-index of 39, Prof. Zhouā€™s publications have had a broad impact on the scientific community, especially in China. His team has published 176 SCI papers and received numerous patents, pushing the boundaries of agricultural chemistry and materials science.

Legacy and Future Contributions šŸŒ±

Prof. Zhouā€™s establishment of the "Agricultural Chemical Materials Interdisciplinary Laboratory" and his leadership of the "Hunan Agricultural University Interdisciplinary Research Institute" reflect his dedication to advancing agricultural innovation. As he mentors future scientists and develops solutions for sustainable agriculture, his legacy is bound to leave a lasting impact on agricultural science.

 

PublicationsĀ 


šŸ“„ Biochar rich in amino ligand for copper selective recollection in wastewater
Authors: Li, S.-K., Wen, Y.-J., Wang, Y.-F., ... Zhou, Z., Zhou, N.
Journal: Separation and Purification Technology
Year: 2025


šŸ“„ N-doped carbon carriers loaded with NiX (X = Fe, Co, Cu): Catalytic synergistic pyrolysis of herbal residues and polypropylene to generate three-phase products and carbon nanotubes
Authors: Chen, Z., Xie, Y., Yi, C., ... Zhou, Z., Luo, W.
Journal: Fuel
Year: 2025


šŸ“„ Enhanced biofilm-dependent biogas upgrading from waste activated sludge fermentation liquor in microbial electrolysis cells
Authors: Li, L., Su, L., Gao, J., ... Zhou, Y., Dai, X.
Journal: Water Research
Year: 2025


šŸ“„ In-situ and ex-situ selective catalysis of biochar-based catalysts for the production of high-quality bio-oil and Hā‚‚-rich gas from tobacco stem
Authors: Tang, X., Li, X.Y., He, Q.F., ... Luo, W., Zhou, Z.
Journal: Journal of Environmental Chemical Engineering
Year: 2024


šŸ“„ Zero-thermal-quenching broadband yellow-emitting BiĀ³āŗ-activated phosphors based on metal to metal charge transfer
Authors: Chen, K., Gao, P., Zhang, Z., ... Zhou, Z., Xia, M.
Journal: Journal of Alloys and Compounds
Year: 2024


 

Mohammed Al Bahri | Materials Science | Best Researcher Award

Dr. Mohammed Al Bahri | Materials Science | Best Researcher Award

A'Sharqiyah University | Oman

Author Profile

Scopus

Orcid

Google Scholar

šŸŽ“ Early Academic Pursuits

Dr. Mohammed Al Bahri's academic journey began with a Bachelorā€™s degree in Physics from the College of Education at Sultan Qaboos University in 1998. He then pursued a Masterā€™s degree in Physics in 2010, where his thesis focused on the "Morphology Dependent Assembly of CuO Nanoparticles." Under the guidance of Prof. Salim Al Harthi, Dr. Al Bahri demonstrated an early interest in nanomaterials. His academic achievements culminated in a Ph.D. in 2018, where he specialized in "Magnetic Nanowires for High Density and Low Power Information Storage" under the mentorship of Prof. Rachid Sbiaa. His Ph.D. work was supported by a full scholarship from the Ministry of Education, further showcasing his potential as a promising researcher.

šŸ’¼ Professional Endeavors

Dr. Al Bahri's professional career spans over two decades, starting as a Physics teacher in secondary schools in Oman (1998-2001). He later transitioned to leadership roles within the Ministry of Education, such as the Head of the Monitoring Student Achievement Department (2012-2018), where he led a team of assessment officers and contributed to the development of student assessment policies. In academia, he became an Assistant Professor at A'Sharqiyah University in 2018, eventually rising to Associate Professor in 2023. His teaching contributions extend across multiple departments, including Applied and Health Sciences, Engineering, and Education. Additionally, he has played a key role in academic program development, internal reviews, and community engagement.

šŸ§‘ā€šŸ”¬ Contributions and Research Focus

Dr. Al Bahri's research interests are primarily focused on magnetic nanowires, nanodevices, and their applications in information storage. His scholarly work includes publishing 13 articles in reputable journals like the Journal of Magnetism and Magnetic Materials and Nanomaterials. With 126 citations in Google Scholar, his research has had a notable impact on the field of nanotechnology. Dr. Al Bahriā€™s work often addresses critical issues in magnetic domain walls and storage devices, contributing significantly to advancements in nanodevice technology.

šŸ† Accolades and Recognition

Throughout his career, Dr. Al Bahri has received numerous accolades. He was awarded the "Best Physics Teacher" by the Ministry of Education in 2002. More recently, in 2022-2023, he was recognized as the "Best Researcher" at A'Sharqiyah University. His work has garnered international attention, with him being among the top 50 academic researchers in Asia for 2022. He has also received prestigious research awards, including the Best Research Award from the International Research Awards (IIRA-2022) and the New Science Inventions (NESIN) 2020 Awards.

šŸŒ Impact and Influence

Dr. Al Bahriā€™s influence extends beyond academia into community service. He has conducted various seminars and workshops for teachers and students, contributing to public education. His leadership in developing academic programs and policies, both at the university and ministry levels, has shaped educational practices in Oman. His research in nanotechnology also offers potential solutions to global challenges in data storage and energy efficiency, reflecting his broad impact.

šŸ… Legacy and Future Contributions

As a dedicated educator, researcher, and academic leader, Dr. Al Bahriā€™s legacy is rooted in his contributions to both physics education and nanotechnology research. His ongoing work in magnetic nanodevices holds promise for future advancements in high-density storage technologies. His role in academic program development and his influence on education policy will likely continue to shape the next generation of Omani scientists and educators.

 

Publications


  • šŸ“–Vortex Domain Wall Thermal Pinning and Depinning in a Constricted Magnetic Nanowire for Storage Memory Nanodevices
    Journal: Nanomaterials
    Authors: Mohammed Al Bahri, Salim Al-Kamiyani, Al Maha Al Habsi
    Year: 2024

  • šŸ“–Thermal Effects on Domain Wall Stability at Magnetic Stepped Nanowire for Nanodevices Storage
    Journal: Nanomaterials
    Authors: Mohammed Al Bahri, Salim Al-Kamiyani
    Year: 2024

  • šŸ“–Chiralityā€Dependent Dynamics and Pinning of Transverse Domain Wall in Constricted Nanowires
    Journal: physica status solidi (a)
    Authors: Mohammed Al Bahri, Rachid Sbiaa
    Year: 2024

  • šŸ“–Multi-segmented Nanowires for Vortex Magnetic Domain Wall Racetrack Memory
    Journal: Chinese Physics B
    Authors: M. Al Bahri, M. Al Hinaai, T. Al Harthy
    Year: 2023

  • šŸ“–Noise Measurements in Industrial Areas in North A' Sharqiyah Region - Oman
    Ā Journal: International Journal of Research and Innovation in Applied Science
    Authors: M. Al Bahri
    Year: 2022