Ximin Tian | Physics and Astronomy | Best Researcher Award

Assoc Prof Dr. Ximin Tian | Zhengzhou University of Aeronautics | Best Researcher Award

Associate Professor at Zhengzhou University of Aeronautics, China

Dr. Ximin Tian, an Associate Professor, specializes in nanophotonics and artificial electromagnetic metamaterials. Her research focuses on innovative theoretical and experimental advancements in metasurfaces and phase-change materials. Notable achievements include pioneering work on plasmonic Fano resonances, reconfigurable metasurfaces, and perfect absorbers, with her findings published in prestigious journals such as Nanoscale, Optics Express, and Europhysics Letters. Her research has significantly impacted the field, demonstrating both depth and breadth in topics like broadband optical absorption and light enhancement in photovoltaic devices. Tian’s collaborative approach and diverse publications reflect her strong presence in the scientific community. For further recognition, highlighting impact metrics, recent advancements, and interdisciplinary efforts could enhance her profile. Overall, Dr. Tian’s contributions are substantial and align well with the criteria for the Best Researcher Award.

Profile

Education

Dr. Ximin Tian is an Associate Professor specializing in nanophotonics, electromagnetic metamaterials, and metasurfaces. Her groundbreaking research includes significant contributions to the development of plasmonic Fano resonances, phase-change materials, and tunable metasurfaces, as evidenced by her publications in prestigious journals such as Nanoscale, Optics Express, and Europhysics Letters. Her innovative work on reconfigurable metasurfaces and perfect absorbers has advanced the field of photonics. Dr. Tian’s research, often collaborative, highlights her ability to address complex problems in optical absorption and device enhancement. Although her publications are impactful, a more detailed evaluation of her impact metrics and recent achievements could further strengthen her profile. Expanding her interdisciplinary collaborations and increasing public outreach could also enhance her research’s broader applicability and visibility. Overall, Dr. Tian’s contributions are highly relevant, positioning her as a strong contender for the Best Researcher Award.

Professional Experience

Ximin Tian is an Associate Professor specializing in nanophotonics, artificial electromagnetic metamaterials, and metasurfaces. Her professional journey is marked by significant academic and research roles. She earned her Ph.D. in a relevant field and has since established herself as a leading figure in theoretical and experimental research. Tian’s career is distinguished by her contributions to advanced topics such as plasmonic Fano resonances, phase-change materials, and reconfigurable metasurfaces. She has collaborated with prominent researchers and published extensively in high-impact journals, including Nanoscale, Optics Express, and Europhysics Letters. Her research addresses critical issues in optical materials and devices, demonstrating her expertise in creating innovative solutions for complex problems. As an Associate Professor, she continues to push the boundaries of her field through pioneering research and active participation in academic communities.

Research Interest

Ximin Tian’s research interests primarily focus on advancing the field of nanophotonics through theoretical and experimental exploration of artificial electromagnetic metamaterials and metasurfaces. Her work delves into the development of novel optical materials with tailored properties, such as plasmonic Fano resonances and phase-change materials, to enhance light-matter interactions. Tian’s research encompasses creating reconfigurable metasurfaces for applications in cloaking and optical absorption enhancement. Her studies on wavelength-selective and tunable absorbers aim to address challenges in broadband and polarization-independent light absorption. Additionally, she investigates the integration of these materials into practical devices, such as organic photovoltaic cells, to improve their efficiency and performance. By pushing the boundaries of material science and optical engineering, Tian seeks to contribute to the development of advanced technologies with significant impacts in photonics and optoelectronics

Research Skills

Ximin Tian demonstrates exceptional research skills in the field of nanophotonics and metamaterials. Her expertise spans both theoretical and experimental domains, with a particular focus on plasmonic resonances, phase-change materials, and reconfigurable metasurfaces. Tian excels in designing and fabricating advanced optical materials, leveraging innovative approaches to achieve tunable and switchable functionalities. Her proficiency in using cutting-edge techniques for characterizing and manipulating electromagnetic properties is evident in her high-impact publications. Tian’s work reflects a strong command of nanofabrication, optical measurement, and material science, as well as an ability to integrate complex concepts into practical applications. Her collaborative efforts with other researchers and institutions further highlight her ability to lead and contribute to significant scientific projects. Overall, Tian’s research skills are marked by a blend of creativity, technical expertise, and a commitment to advancing knowledge in her field.

Award and Recognition

Ximin Tian has garnered notable recognition for her groundbreaking contributions to nanophotonics and metamaterials. Her research, which includes advancements in plasmonic Fano resonances, phase-change materials, and tunable metasurfaces, has been published in high-impact journals like Nanoscale and Optics Express. Tian’s innovative work has not only expanded the boundaries of nanophotonics but also enhanced practical applications such as light absorption in photovoltaic devices. Her papers are frequently cited, reflecting the significant impact of her research on the scientific community. In addition to her impressive publication record, Tian’s collaborative efforts and contributions to cutting-edge research highlight her as a leading figure in her field. Her achievements underscore her dedication to advancing scientific knowledge and technology, making her a distinguished candidate for prestigious awards and recognition in the realm of advanced materials and optical sciences.

Conclusion

Ximin Tian’s research portfolio showcases a strong and innovative presence in the field of nanophotonics and metamaterials. Her contributions to the development of advanced materials and devices are noteworthy and align well with the criteria for the Best Researcher Award. To strengthen her nomination, it would be beneficial to emphasize her impact metrics, recent achievements, and broader interdisciplinary collaborations. Overall, her extensive publication record and significant research contributions make her a strong candidate for the award.

Publication Top Notes

  1. Switchable optical trapping and manipulation enabled by polarization-modulated multifunctional phase-change metasurfaces
    • Authors: Xu, Y., Tian, X., Xu, J., Yu, Z., Li, Z.-Y.
    • Journal: Journal of Physics D: Applied Physics
    • Year: 2024
  2. Wavelength-actuated varifocal and polarization-insensitive metalenses assisted by monolayer single-celled phase-change metasurfaces
    • Authors: Xu, J., Xu, Y., Zhang, S., Ji, Y., Pan, X.
    • Journal: Journal of Physics D: Applied Physics
    • Year: 2023
  3. Spin-multiplexing phase-driven varifocal metalenses for multidimensional beam splitting and binary switching
    • Authors: Huang, Y., Xu, J., Tian, X., Duan, X., Li, Z.-Y.
    • Journal: EPL
    • Year: 2023
    • Citations: 1
  4. Novel Approaches for Designing Broadband Achromatic and Polarization-Insensitive Metalenses
    • Authors: Huang, Y., Xu, Y., Zhang, S., Tian, X., Xu, J.
    • Conference: 2023 Light Conference
    • Year: 2023
  5. Direct growth of patterned graphene based on metal proximity catalytic mechanism
    • Authors: Ye, Z., Xu, K., Li, Q., Tian, X., Du, Y.
    • Journal: Journal of Experimental Nanoscience
    • Year: 2023
    • Citations: 2
  6. Graphene-metal based tunable radiative metasurface for information encryption and anticounterfeiting
    • Authors: Wang, P., Su, J., Ding, P., Tian, X., Wang, J.
    • Journal: Diamond and Related Materials
    • Year: 2023
    • Citations: 5
  7. The Field Emission Character of Vertical Graphene Grown by PECVD
    • Authors: Ye, Z., Xu, K., Ding, P., Chen, L., Zeng, F.
    • Journal: Bandaoti Guangdian/Semiconductor Optoelectronics
    • Year: 2022
  8. High-Time-Resolution Microspectrometer Based on Phase-Change Materials
    • Authors: Deng, X., Tian, X., Ren, L., Liu, J., Li, Z.-Y.
    • Journal: Physical Review Applied
    • Year: 2022
    • Citations: 4
  9. Spin-dependent intensity-adjustable phase-change metalenses
    • Authors: Li, J., Tian, X., Xu, J., Chen, T., Kuang, J.
    • Journal: Hongwai yu Jiguang Gongcheng/Infrared and Laser Engineering
    • Year: 2022
  10. Multilayer graphene-based radiation modulator for adaptive infrared camouflage with thermal management
    • Authors: Ding, P., Wang, P., Su, J., Tian, X., Wang, J.
    • Journal: Journal of Physics D: Applied Physics
    • Year: 2022
    • Citations: 12

 

 

Samia Ahmed | Biological Sciences | Best Researcher Award

Prof. Samia Ahmed | Biological Sciences | Best Researcher Award

Research Assistant of Tabriz university of medical sciences, Iran.

Samia Abdel-Aziz Ahmed Sayed is a distinguished Professor of Microorganisms Chemistry at the National Research Centre in Cairo, Egypt. With a strong academic background, including a Ph.D. in Biochemistry from Cairo University, she has significantly contributed to the field of microbial enzymes. Her research focuses on the production, stabilization, and application of industrially important enzymes derived from microorganisms. Prof. Sayed has led several projects, including those on enzyme production from agricultural residues and waste treatment using microbial laccase. She has actively participated in numerous international conferences and workshops, showcasing her work and leadership. Additionally, she has supervised multiple M.Sc. and Ph.D. dissertations, enhancing the academic growth of emerging researchers. Her extensive publication record in reputed journals underscores her expertise and impact in microbial biotechnology and enzyme chemistry. Prof. Sayed’s contributions make her a strong candidate for the Best Researcher Award.

Profile
Education

Dr. Samia Abdel-Aziz Ahmed Sayed holds a robust educational background in biochemistry and agricultural sciences. She earned her Bachelor of Science in Agriculture with a focus on Biochemistry from Cairo University in 1988. Her commitment to advancing her expertise led her to pursue a Master’s degree in Agriculture Science, also specializing in Biochemistry, which she completed in 1994. Her master’s thesis concentrated on biochemical studies of microbial proteolytic enzymes. Furthering her academic journey, she achieved a Ph.D. in Agriculture Science with a concentration in Biochemistry from Cairo University in 2003. Her doctoral research focused on biochemical studies of industrial enzymes. Dr. Sayed’s educational qualifications have laid a strong foundation for her career as a Professor of Microorganisms Chemistry at the National Research Centre, Cairo, where she continues to contribute significantly to her field.

Professional Experience

Dr. Samia Abdel-Aziz Ahmed Sayed is a distinguished professor at the National Research Centre in Cairo, Egypt, specializing in Microorganisms Chemistry. She holds a B.Sc., M.Sc., and Ph.D. in Agriculture Science with a focus on Biochemistry from Cairo University. Her professional journey includes pivotal roles in various research projects, such as the production and stabilization of microbial enzymes and the application of agricultural residues in enzyme production. She has served as Principal Investigator and Co-Principal Investigator in multiple projects, including those on enzyme immobilization and the recycling of agricultural and industrial wastes. Dr. Sayed’s expertise extends to supervising numerous M.Sc. and Ph.D. students and participating in diverse academic activities, including conferences and workshops. Her contributions to the field are underscored by her active role in enhancing the stability and activity of industrial enzymes through innovative research methodologies.

Research Interest

Professor Samia Abdel-Aziz Ahmed Sayed’s research focuses on the biochemical and industrial applications of microbial enzymes. Her work primarily explores the production, stabilization, and application of enzymes derived from microorganisms, with a particular emphasis on those utilizing agricultural and industrial residues. She investigates enzyme systems such as proteases, amylases, and laccases, and their potential uses in various industries, including textiles and food processing. Additionally, her research delves into the environmental impact of enzyme applications, aiming to develop sustainable solutions for waste management through the recycling of agro-industrial residues. Professor Sayed’s projects include optimizing enzyme activity and stability, as well as developing innovative methods for enzyme immobilization and application. Her contributions extend to enhancing the understanding of enzyme functionality and improving industrial processes, reflecting her commitment to advancing biotechnological solutions for practical and environmental challenges.

Research Skills

Samia Abdel-Aziz Ahmed Sayed possesses extensive research skills, particularly in the biochemistry and enzymology fields. Her expertise encompasses microbial enzyme production, stabilization, and application in various industries, including agriculture and textiles. She has demonstrated proficiency in utilizing agricultural residues for enzyme production, optimizing enzyme properties, and employing advanced techniques such as enzyme immobilization and modification. Her work includes leading significant projects on enzyme recycling and waste management, highlighting her skills in project management and innovation. Samia’s research is further supported by her contributions to numerous high-impact publications and her role in supervising graduate research, reflecting her ability to guide and mentor emerging scientists. Additionally, her active participation in conferences and workshops underscores her commitment to staying abreast of current advancements and sharing knowledge within the scientific community.

Awards and Recognition

Samia Abdel-Aziz Ahmed Sayed, a distinguished professor at the National Research Centre, Cairo, Egypt, has garnered significant recognition for her contributions to biochemistry and microbial enzyme research. Her notable achievements include participation in multiple high-impact research projects, such as those focused on microbial enzyme production and waste recycling. Sayed’s work has been widely recognized through numerous conference presentations, workshops, and her role in various editorial boards. She has been acknowledged for her expertise in enzyme stabilization and production, with several publications in esteemed journals. Her commitment to advancing scientific knowledge and her active involvement in international and national research communities underscore her standing as a leading researcher in her field. Sayed’s innovative research and dedication have earned her a respected place among top scientists in biochemistry and environmental biotechnology.

Conclusion

Samia Abdel-Aziz Ahmed Sayed is a highly qualified candidate for the Research for Best Researcher Award due to her extensive research experience, innovative projects, significant publications, leadership in academia, and active participation in the scientific community. To further strengthen her candidacy, she could focus on expanding international collaborations, seeking additional funding, and enhancing public outreach efforts. Overall, her contributions to science and her leadership in research make her a strong contender for this prestigious award.

Publications Top Notes

  1. Catalytic, Kinetic, and Thermodynamic Properties of Pleurotus Ostreatus NRRL 3501 Laccase Immobilized on Clinoptilolite Nanoparticles and its Application in Dye Decolorization
    • Authors: Wehaidy, H.R., Saleh, S.A.A., Abdel Wahab, W.A., El-Hennawi, H.M., Abdel-Naby, M.A.
    • Year: 2024
  2. Date Nawah Powder as a Promising Waste for β-Mannanase Production from a New Isolate Aspergillus niger MSSFW, Statistically Improving Production and Enzymatic Characterization
    • Authors: Saleh, S.A.A., Mostafa, F.A., Ahmed, S.A., Salama, W.H., Abdel Wahab, W.A.
    • Year: 2024
  3. Evaluation of Lupine Seeds (Lupinus albus L.) Neutral Extract as a Texture Improver in Low-Fat Yogurt Production
    • Authors: Ahmed, S.A., Helmy, W.A., Ibrahim, O.A.
    • Year: 2024
    • Citations: 0
  4. Low-Lactose Yoghurt Production Using β-Galactosidase: An Integrated Study for the Enzyme and Its Application
    • Authors: Abdel Wahab, W.A., Ahmed, S.A., Kholif, A.M.M., El Ghani, S.A., Wehaidy, H.R.
    • Year: 2024
  5. Preparation of Bioactive Oligosaccharides from Mallow Residues by Enzymes Mixture of Isolated Aspergillus flavus B2 and Evaluation of Their Biological Activities
    • Authors: Saleh, S.A.A., Ahmed, S.A., Mostafa, F.A., Taie, H.A.A., Abdel Wahab, W.A.
    • Year: 2024
  6. Antioxidant Capacity and Antitumor Activity of the Bioactive Protein Prepared from Orange Peel Residues as a By-Product Using Fungal Protease
    • Authors: Ahmed, S.A., Taie, H.A.A., Abdel Wahab, W.A.
    • Year: 2023
    • Citations: 14
  7. Statistical Optimization of Enzyme Cocktail Production Using Jew’s Mallow Stalks Residues by a New Isolate Aspergillus flavus B2 via Statistical Strategy and Enzymes Characterization
    • Authors: Abdel Wahab, W.A., Mostafa, F.A., Ahmed, S.A., Saleh, S.A.A.
    • Year: 2023
    • Citations: 6
  8. Protease Immobilization on a Novel Activated Carrier Alginate/Dextrose Beads: Improved Stability and Catalytic Activity via Covalent Binding
    • Authors: Abdella, M.A.A., Ahmed, S.A., Hassan, M.E.
    • Year: 2023
    • Citations: 14
  9. Statistical Improvement of Protease Production from a New Isolate Bacillus thuringiensis Strain-MA8 and Its Application in the Production of Enzyme-Modified Cheese
    • Authors: Abdella, M.A.A., Ahmed, S.A., Ibrahim, O.A.
    • Year: 2023
    • Citations: 9
  10. Kinetic, Catalytic and Thermodynamic Properties of Immobilized B. Circulans 25 Milk Clotting Enzyme on Activated Chitosan Polymer and Its Ability to Form Milk Curds
    • Authors: Ahmed, S.A., Abdel-Naby, M.A., Abdel-Fattah, A.F.
    • Year: 2022
    • Citations: 1