Jiade Yang – Physical Organic Chemistry – Best Researcher Award 

Prof. Dr. Jiade Yang - Physical Organic Chemistry - Best Researcher Award 

Binzhou Medical University - China

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🎓 Early Academic Pursuits

Prof. Dr. Jiade Yang's academic journey began with a strong foundation in chemistry education at Shandong Normal University, where he earned his B.Sc. in Chemistry Education in 1994. His passion for organic chemistry led him to pursue advanced studies at the Shanghai Institute of Organic Chemistry (SIOC), Chinese Academy of Sciences (CAS), where he completed his M.Sc. in 1997 and his Ph.D. in 2001. His doctoral research focused on the total synthesis of natural products, laying the groundwork for his future contributions to physical organic chemistry and pharmaceutical sciences.

💼 Professional Endeavors

Dr. Jiade Yang's professional career is distinguished by an impressive blend of academic research and industrial experience. Following his Ph.D., he undertook postdoctoral research at Harvard University under the supervision of Professor William Doering von Eggers, where he delved into advanced topics in physical organic chemistry. He further honed his expertise through postdoctoral research at the Albert Einstein College of Medicine and Pfizer Inc., where he focused on bio-organic chemistry and pharmaceutical process development. His transition into industry saw him take on leadership roles as an R&D Director at various pharmaceutical companies, including Drug Intermediate Synthesis, Shanghai Wincon Pharma, and Six-D Pharma. Since 2019, he has also served as a professor at the School of Pharma, Binzhou Medical University-Yantai Campus.

🔬 Contributions and Research Focus

Dr. Yang’s research has significantly advanced the field of physical organic chemistry, particularly in the synthesis of complex natural products and pharmaceutical intermediates. His expertise spans total synthesis, bio-organic chemistry, and drug development, leading to numerous innovations in chemical synthesis methodologies. His contributions to the pharmaceutical industry have been instrumental in optimizing drug synthesis processes, ensuring high efficiency and cost-effectiveness. His pioneering work bridges the gap between fundamental physical organic chemistry and its industrial applications, benefiting both academia and the pharmaceutical sector.

🌍 Impact and Influence

With a career spanning both academic and industrial research, Dr. Jiade Yang has had a profound impact on the fields of organic and physical organic chemistry. His collaborations with leading institutions and pharmaceutical companies have led to the development of novel chemical compounds with significant medicinal potential. His mentorship of students and young researchers at Binzhou Medical University has further contributed to the dissemination of knowledge and the training of the next generation of chemists. His work has been widely cited in scientific literature, reflecting his influence in shaping modern synthetic methodologies.

🏆Academic Cites

Dr. Yang’s extensive research has been published in top-tier scientific journals and has received substantial citations, demonstrating the academic community's recognition of his contributions. His work in physical organic chemistry has provided a solid foundation for further advancements in natural product synthesis and drug development. His findings continue to be referenced in studies focused on optimizing chemical reactions and improving pharmaceutical production techniques.

🌟 Legacy and Future Contributions

Looking forward, Dr. Jiade Yang aims to further expand his research in physical organic chemistry, focusing on sustainable and efficient synthetic methodologies for pharmaceutical applications. His ongoing work at Six-D Pharma and Binzhou Medical University ensures that his research findings will continue to shape the industry. His legacy as a distinguished researcher, mentor, and industrial innovator positions him as a key figure in the future of organic and pharmaceutical chemistry.

📝Physical Organic Chemistry

Prof. Dr. Jiade Yang's extensive contributions to physical organic chemistry have advanced the understanding of reaction mechanisms and total synthesis methodologies. His expertise in physical organic chemistry has been instrumental in bridging academic research and industrial applications. With ongoing research and innovation, his influence in physical organic chemistry continues to grow, driving forward new discoveries and applications in pharmaceutical sciences.

Notable Publication


📝Investigation of Radical-initiated Carbonic Acid Decomposition and Mediated Molecule Formation

Authors: Jiade Yang, Jintao Wu, Jiaying Zhang, Yunchen Huang, Yatong Shi, Yurui Wang, Xiyu Yang, Tingting Chen, Hui Zhao

Journal: iScience

Issue: February 2025

Year: 2025

Abdelkader Miloud El-horri – Quantum Chemistry – Young Scientist Excellence Award 

Assoc. Prof. Dr. Abdelkader Miloud El-horri - Quantum Chemistry - Young Scientist Excellence Award 

Departmenet of chemistry/Hassiba BenBouali University of Chlef - Algeria

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🎓 Early Academic Pursuits

Assoc. Prof. Dr. Abdelkader Miloud El-horri laid a strong academic foundation in QUANTUM CHEMISTRY and theoretical chemistry from an early stage. His academic journey began with a Bachelor of Science from Mohamed Boudiaf High School in Sidi Bel Abbes (1999-2002), followed by a Licensing Degree in General Chemistry at the University of Djilali Liabes (2002-2008). His passion for chemistry led him to pursue a Magister Degree in Physical and Theoretical Chemistry at the same university (2008-2011), where he engaged in both theoretical coursework and experimental laboratory research on organic pollution extraction via coagulation and complexation techniques.

💼 Professional Endeavors

Dr. El-horri's academic career progressed with his Doctorate in Physical and Theoretical Chemistry from the University of Djilali Liabes (2011-2017), during which he developed advanced expertise in QUANTUM CHEMISTRY. In 2018, he secured a lecturer position at Hassiba BenBouali University of Chlef, marking a significant milestone in his career. His teaching journey, spanning from 2011 to the present, includes instructing undergraduate and graduate students in subjects such as general chemistry, theoretical chemistry, quantum chemistry, molecular modeling, and numerical methods.

🔬 Contributions and Research Focus

Dr. El-horri's research focus lies in QUANTUM CHEMISTRY, theoretical chemistry, and computational methods applied to molecular modeling. His work emphasizes the development of computational techniques to study molecular interactions and chemical reactions at the quantum level. His expertise in informatics for chemistry has also contributed to integrating numerical methods into chemical research, enhancing both theoretical and practical applications.

🌍 Impact and Influence

Dr. El-horri has had a profound influence on the academic and scientific community, mentoring undergraduate and graduate students while advancing research in QUANTUM CHEMISTRY. His teachings in Quantum Chemistry II and molecular modeling have shaped the next generation of chemists. His impact extends beyond the classroom, as he continuously contributes to refining computational chemistry techniques, making theoretical chemistry more accessible and applicable.

🏆Academic Cites

As an established researcher, Dr. El-horri’s scholarly work has been cited in various academic journals and research papers, particularly in the domains of quantum and theoretical chemistry. His publications serve as a valuable reference for chemists working in computational modeling and chemical reaction simulations.

🌟 Legacy and Future Contributions

Dr. Abdelkader Miloud El-horri’s legacy is characterized by his commitment to advancing theoretical and quantum chemistry education and research. Looking ahead, he aims to further develop computational models for molecular behavior, contribute to environmental chemistry solutions, and integrate artificial intelligence into chemical informatics. His continued research and mentorship will leave a lasting impact on the field, ensuring that future chemists build upon his foundational work in theoretical chemistry.

📝Notable Publication


📝Performance of hybrid DFT compared to MP2 methods in calculating nonlinear optical properties of divinylpyrene derivative molecules

Authors: M. Zouaoui-Rabah, M. Sekkal-Rahal, F. Djilani-Kobibi, A. M. Elhorri, ...

Journal: The Journal of Physical Chemistry A

Year: 2016

Citations: 51


📝Theoretical study of the azo dyes dissociation by advanced oxidation using Fukui indices. DFT calculations

Authors: A. M. Elhorri, K. D. Belaid, M. Zouaoui-Rabah, R. Chadli

Journal: Computational and Theoretical Chemistry

Year: 2018

Citations: 22


📝NLO response of derivatives of benzene, stilbene, and diphenylacetylene: MP2 and DFT calculations

Authors: A. M. Elhorri, M. Zouaoui-Rabah

Journal: Chinese Journal of Chemical Engineering

Year: 2017

Citations: 17


📝Kajima Mulengi J., Hammouti B

Authors: R. Chadli, M. Elazouzi, I. Khelladi, A. M. Elhorri, H. Elmsellem, A. Aouniti

Journal: Portugaliae Electrochimica Acta

Year: 2017

Citations: 15


📝Theoretical study of new push–pull molecules based on transition metals for NLO applications and determination of ICT mechanisms by DFT calculations

Authors: A. M. Elhorri

Journal: Journal of Theoretical and Computational Chemistry

Year: 2020

Citations: 11


📝Theoretical study by DFT of organometallic complexes based on metallocenes active in NLO

Authors: A. M. Elhorri

Journal: Journal of Molecular Modeling

Year: 2021

Citations: 9


📝Synthesis of aza-pseudopeptides and the evaluation of their inhibiting efficacy of mild steel corrosion in 1.0 M HCl

Authors: R. Chadli, A. Elhorri, H. Elmsellem, M. Elazzouzi, N. Merad, A. Aouniti, ...

Journal: Protection of Metals and Physical Chemistry of Surfaces

Year: 2017

Citations: 9