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Faculty
Yuguang Ma
Title
Professor
Division
Polymer Chemistry and Physics
Specialties
Organic optoelectronic functional materials and devices
Website
Contact Information
Email    ygma@jlu.edu.cn
Office     B504 Supramolecular building               
Lab        B605 Supramolecular building
Short Biography
Ma Yuguang, born in November 1963, is a member of the Jiusan Society and an academician of the Chinese Academy of Sciences. He is also a globally highly cited scientist in the field of materials science and a renowned scholar in organic polymer optoelectronic materials. He firstly reported the new principle of using phosphorescent materials to improve the efficiency of electroluminescent devices in the world, and proposed the "hot exciton" mechanism and the new design principle of hybrid charge transfer state (HLCT) materials. He has published over 567 academic papers in important domestic and international academic journals, with more than 23,700 citations by others, making significant contribution to the construction of the discipline of organic/polymer optoelectronic materials and devices.
Research Interest
The research of Prof. Yuguang Ma focuses mainly on the development of new mechanisms, new structures of organic polymer optoelectronic materials, and fabrication of high-performance OLEDs.
Honors & Awards
2001,Winner of National Natural Science Foundation of China for Outstanding Young Scholars
2013, Leading Talent of the National "100,000 Talents Project"
2021, Member of the Chinese Academy of Sciences
Publications

1. Y. G. Ma, H. Y. Zhang, J. C. Shen, C. M. Che*, Electroluminescence from Triplet Metal-Ligand Charge-Transfer Excited State of Transition Metal Complexes, Synthetic Metals, 1998, 94, 245-248.
2. L. Yao, B. Yang, Y. G. Ma, Progress in Next-Generation Organic Electroluminescent Materials: Material Design Beyond Exciton Statistics, Science China-Chemistry, 2014, 57, 335-345.
3. Y. W. Xu, P. Xu, D. H. Hu, Y. G. Ma, Recent Progress in Hot Exciton Materials for Organic Light-Emitting Diodes, Chemical Society Reviews, 2021, 50, 1030-1069.
4. W. L. Tan, Y. Yu, Y. L. Li, H. L. Gan, L. Xu, M. K. Li, B. H. Wang, L. Y. Wang, X. Y. Wang, L. Ying, Y. G. Ma, Achieving Spectral Narrowing by Strengthening the Soliton-Like Characteristics through Peripheral Group Substitution in Aromatic Heterocyclic Emitters, Angew. Chem. Int. Ed., 2025, DOI10.1002/anie.202500235
5. W. L. Tan, Y. Yu, T. Y. Shi, L. T. Zhang, H. L. Gan, B. H. Wang, G. L. Liu, M. K. Li, L. Ying, Y. G. Ma, Achieving Ultra-Narrow-Band Deep-Red Electroluminescence By a Soliton-type Dye Squaraine, Advanced Materials, 2024, DOI:10.1002/adma.202410418.



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