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个人简介

2017年9月 – 至今 南京工业大学 副研究员 2014年7月 – 2017年8月 清华大学 博士后 2008年9月 – 2014年6月 中国科学技术大学 博士 2004年9月 – 2008年7月 聊城大学 学士

研究领域

有机光电材料的理论与计算模拟;机器学习应用于新型有机发光材料的高通量筛选与理论设计;分子结构–聚集体–光物理性质的关联机制,包括有机磷光、金属配合物、热激活延迟荧光等发光材料。

近期论文

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Chen, X.; Tan, S.; Qin, C.; Wang, Y.*; Lee, H. L.; Lee, K. H.; Qin, K.; Ma, H.*; Zhu, W.; Lee, J. Y.*, Molecular design strategy for orange-red thermally activated delayed fluorescence emitters via intramolecular energy transfer and their application in solution processable organic light-emitting diodes. Chem. Eng. J. 2022, 428, 131691. Zhao, W.; Liu, Z.; Yu, J.; Lu, X.; Lam, J. W. Y.; Sun, J.; He, Z.*; Ma, H.*; Tang, B. Z.*, Turning On Solid-State Luminescence by Phototriggered Subtle Molecular Conformation Variations. Adv. Mater. 2021, 33, 2006844. Li, B.; Yang, Z.; Gong, W.; Chen, X.; Bruce, D. W.; Wang, S.; Ma, H.*; Liu, Y.; Zhu, W.; Chi, Z.*; Wang, Y.*, Intramolecular Through‐Space Charge Transfer Based TADF‐Active Multifunctional Emitters for High Efficiency Solution‐Processed OLED. Adv. Optical Mater. 2021, 9, 2100180. Ding, R.; Qin, K.; Sun, H.; Zhou, S.; Guo, S.; Feng, H.; Ma, H.*; Qian, Z.*, Endowing nitro-compounds with bright and stimuli-responsive luminescence based on propeller-like AIEgens. J. Mater. Chem. C 2021. DOI:10.1039/D1TC01713F. Ye, W.#; Ma, H.#; Shi, H.#; Wang, H.; Lv, A.; Bian, L.; Zhang, M.; Ma, C.; Ling, K.; Gu, M.; Mao, Y.; Yao, X.; Gao, C.; Shen, K.; Jia, W.; Zhi, J.; Cai, S.; Song, Z.; Li, J.; Zhang, Y.; Lu, S.; Liu, K.; Dong, C.; Wang, Q.; Zhou, Y.; Yao, W.; Zhang, Y.; Zhang, H.; Zhang, Z.; Hang, X.; An, Z.*; Liu, X.*; Huang, W.*, Confining isolated chromophores for highly efficient blue phosphorescence. Nature Mater. 2021. DOI:10.1038/s41563-021-01073-5. Gu, L.; Wang, X.; Singn, M.; Shi, H.; Ma, H.*; An, Z.*; Huang, W.* Organic Room Temperature Phosphorescence Materials: From Static to Dynamic. J. Phys. Chem. Lett. 2020, 11, 6191. , L.; Wei, Q.; Cheng, Y.; Ma, H.*; Xiong, S.*; Zhang, X.* Theoretical studies on full-color thermally activated delayed fluorescence molecules. J. Mater. Chem. C 2020, 8, 5839. Gu, M.; Shi, H.; Ling, K.; Lv, A.; Huang, K.; Singh, M.; Wang, H.; Gu, L.; Yao, W.; An, Z.*; Ma, H.*; Huang, W.* Polymorphism-Dependent Dynamic Ultralong Organic Phosphorescence. Research 2020, 2020, 9. Ma, H.; Peng, Q.*; An, Z.; Huang, W.; Shuai, Z.* Efficient and Long-Lived Room-Temperature Organic Phosphorescence: Theoretical Descriptors for Molecular Designs. J. Am. Chem. Soc. 2019, 141, 1010. Ma, H.; Yu, H.; Peng, Q.*; An, Z.; Wang, D.; Shuai, Z.* Hydrogen Bonding-Induced Morphology Dependence of Long-Lived Organic Room-Temperature Phosphorescence: A Computational Study. J. Phys. Chem. Lett. 2019, 10, 6948. Lv, A.; Ye, W.; Jiang, X.; Gan, N.; Shi, H.; Yao, W.; Ma, H.*; An, Z.*; Huang, W.* Room-Temperature Phosphorescence from Metal-Free Organic Materials in Solution: Origin and Molecular Design. J. Phys. Chem. Lett. 2019, 10, 1037. Wu, Y.; Tan, X.; Lv, A.; Yu, F.; Ma, H.*; Shen, K.; Sun, Z.; Chen, F.; Chen, Z.-K.; Hang, X.-C.* Triplet Excited-State Engineering of Phosphorescent Pt(II) Complexes. J. Phys. Chem. Lett. 2019, 10, 5105. Zhang, T.; Gao, H.; Lv, A.; Wang, Z.; Gong, Y.; Ding, D.; Ma, H.*; Zhang, Y.*; Yuan, W.* Hydrogen bonding boosted the persistent room temperature phosphorescence of pure organic compounds for multiple applications. J. Mater. Chem. C 2019, 7, 9095. Li, M.; Ling, K.; Shi, H.; Gan, N.; Song, L.; Cai, S.; Cheng, Z.; Gu, L.; Wang, X.; Ma, C.; Gu, M.; Wu, Q.; Bian, L.; Liu, M.; An, Z.*; Ma, H.*; Huang, W.* Prolonging Ultralong Organic Phosphorescence Lifetime to 2.5 s through Confining Rotation in Molecular Rotor. Adv. Optical Mater. 2019, 7, 1800820. Ling, K.; Shi, H.; Wang, H.; Fu, L.; Lv, A.; Huang, K.; Ye, W.; Gu, M.; Ma, C.; Yao, X.; Jia, W.; Zhi, J.; Yao, W.; An, Z.*; Ma, H.*; Huang, W.* Controllable Multiemission with Ultralong Organic Phosphorescence in Crystal by Isomerization. Adv. Optical Mater. 2019, 7, 1901076. Ma, H.; Shen, K.*; Wu, Y.; Xia, F.; Yu, F.; Sun, Z.; Qian, C.; Peng, Q.; Zhang, H.-H.; You, C.; Xie, G.*; Hang, X.-C.*; Huang, W. High-color-purity and efficient solution-processable blue phosphorescent light-emitting diodes with Pt(II) complexes featuring 3ππ* transitions. Mater. Chem. Front. 2019, 3, 2448.

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