Gerardo Jafet González Loera | 2D Materials | Best Researcher Award 

Mr. Gerardo Jafet González Loera | 2D Materials | Best Researcher Award 

Mr. Gerardo Jafet González Loera | Universidad Autónoma de Zacatecas | Mexico

Gerardo Jafet González Loera is a physicist and biochemical engineering graduate from the Universidad Autónoma de Zacatecas, specializing in computational condensed matter physics and the study of two-dimensional materials. He has authored publications in Computational Condensed Matter and Revista Mexicana de Física on the electronic and optical properties of 2D GaAs with amphoteric impurities, using density functional theory (DFT). His research has been presented at national and international conferences in Mexico, Colombia, and beyond, covering topics such as spray pyrolysis deposition of SnO₂ and the modulation of GaAs properties through substitutional doping.

Author Profile

ORCID

Early Academic Pursuits

Mr. Gerardo Jafet González Loera began his academic formation in Física and INGENIERÍA BIOQUÍMICA at the Unidad Académica de Ciencias Químicas. His early dedication to scientific research became evident through his participation in both national and international academic events. He earned his Licenciatura degree, and by 2019, he was already engaged in hands-on experimentation, including the fabrication of spray pyrolysis equipment for material deposition. These formative years provided him with the technical foundation and analytical skills necessary for his later specialization in 2D Materials research.

Professional Endeavors

Mr. González Loera has actively participated in numerous congresses, symposiums, and workshops across Mexico, Colombia, and Latin America, presenting on topics such as the electronic structure, optical properties, and quantum phenomena in novel materials. His professional experience includes significant work on GaAs monolayers doped with amphoteric impurities (Si, Ge, Sn) using density functional theory (DFT) simulations. He has been the principal author in high-impact research published in Computational Condensed Matter and Revista Mexicana de Física.

Contributions and Research Focus

His research focus lies in the computational modeling and theoretical analysis of 2D Materials, particularly GaAs-based systems with amphoteric doping. By employing DFT methodologies, he has calculated the electronic structure, imaginary dielectric function, and optical properties of these materials, providing valuable insights for future optoelectronic and spintronic applications. His contributions include novel approaches to understanding spin polarization effects and substitutional doping modulation in 2D Materials, bridging theoretical predictions with potential experimental implementations.

Impact and Influence

Mr. González Loera has had a growing influence in the Latin American scientific community through his active dissemination of research. His presentations at events such as the XXIV Latin American Symposium on Solid State Physics and the International Conference on Physics of Light-Matter Coupling in Nanostructures have brought international attention to his findings. Additionally, his outreach activities, including interviews and science communication workshops, have helped make complex concepts in nanotechnology and 2D Materials accessible to broader audiences.

Academic Cites

His published works, particularly in Computational Condensed Matter (2025) and Revista Mexicana de Física (2023), have started to attract academic citations, underscoring their relevance in the areas of condensed matter physics and materials science. The detailed computational results and theoretical models he presents serve as references for ongoing research into 2D Materials and their tunable properties.

Legacy and Future Contributions

Mr. González Loera is poised to continue expanding the theoretical understanding of electronic and optical phenomena in 2D Materials, aiming to integrate his computational findings into experimental and industrial applications. His future research trajectory includes exploring quantum dots based on novel GaO and related compounds, as well as advancing theoretical frameworks for emerging nanomaterials in electronics, photonics, and quantum technologies. His commitment to academic dissemination ensures that his contributions will inspire the next generation of material scientists.

Notable Publications

Electronic structure and imaginary dielectric function for 2D GaAs doped with Si amphoteric impurities: A DFT study

Authors: G. J. González-Loera, Karla Arely Rodríguez Magdaleno, F. M. Nava-Maldonado, J. C. Martínez-Orozco

Journal: Revista Mexicana de Física

Year: 2023

Conclusion

Through a combination of rigorous computational research, active scientific dissemination, and engagement in international collaborations, Mr. Gerardo Jafet González Loera has positioned himself as a promising figure in the study of 2D Materials. His work not only deepens the theoretical knowledge of GaAs monolayers and doped systems but also paves the way for practical technological advancements in optoelectronics and nanotechnology. His growing academic impact and dedication to innovation suggest a future of significant contributions to the global materials science community.

Thuc Hue Ly | 2D materials | Best Researcher Award 

Ms. Thuc Hue Ly | 2D materials | Best Researcher Award 

City University | Hong Kong 

Author Profile

Early Academic Pursuits

Thuc Hue Ly began her academic journey with a Ph.D. from Sungkyunkwan University, Korea, in 2015. Following this, she embarked on her research career as an IBS Research Fellow at the Center for Integrated Nanostructure Physics, Sungkyunkwan University, contributing significantly to the field of nanomaterials science and technology.

Professional Endeavors

Ly's professional journey continued as a PolyU Postdoctoral Research Fellow at the Department of Applied Physics, Hong Kong PolyU, followed by an appointment as an Assistant Professor at the Department of Chemistry, CityU of Hong Kong, where she showcased her prowess in research and teaching.

Contributions and Research Focus

Ly's research focuses on the synthesis, characterization, and application of 2D materials, particularly transition metal dichalcogenides (TMDs), and their integration into various nanostructures. Her work has led to groundbreaking discoveries in the field, as evidenced by her publication record in top-tier journals like Nature Nanotechnology, Nature Materials, and Science Advances.

Impact and Influence

Through her dynamic research on crack propagation in 2D materials, edge delamination phenomena, and electrical transport across TMD grain boundaries, Ly has significantly contributed to advancing the understanding of nanoscale mechanical and electronic properties. Her work has not only expanded the theoretical framework but also paved the way for practical applications in electronics, optoelectronics, and energy storage devices.

Academic Citations

Ly's contributions have garnered significant attention within the scientific community, as reflected in her numerous citations across her publications. Her research has provided valuable insights into the fundamental properties of 2D materials, influencing the direction of future studies in the field.

Legacy and Future Contributions

As an Associate Professor at the Department of Chemistry, CityU of Hong Kong, and a core member of the Center of Super-Diamond & Advanced Films (COSDAF), Ly continues to lead innovative research initiatives and mentor the next generation of scientists. Her recent awards, including the Excellent Young Scientist Award and fellowship from the International Association of Advanced Materials, underscore her growing influence and promise for future contributions to the field.

2D Materials

Ly's research underscores the pivotal role of 2D materials in driving advancements in nanotechnology and materials science. By elucidating the unique properties and behaviors of these atomically thin materials, she has opened new avenues for engineering novel devices with enhanced performance and functionality. Her patent portfolio further highlights her commitment to translating scientific discoveries into practical applications, ensuring a lasting impact on diverse technological domains.

Notable Publication