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袁望章

基本信息

姓名:袁望章

职称:研究员
邮箱:wzhyuan@sjtu.edu.cn

通讯地址:上海市闵行区东川路800号很很鲁很很鲁视在线视频|香蕉伊人不卡在线看|天天鲁啪视频在线B楼433室

教育经历

1999.09-2003.06:武汉理工大学材料学院高分子系,学士

2003.09-2008.06:浙江大学高分子系,博士

工作经历

2008.06-2010.11:香港科技大学化学系,博士后、助理研究员

2011.01-2012.12:很很鲁很很鲁视在线视频|香蕉伊人不卡在线看|天天鲁啪视频在线,讲师

2013.01-2018.12:很很鲁很很鲁视在线视频|香蕉伊人不卡在线看|天天鲁啪视频在线,副研究员

2019.01-至今:      很很鲁很很鲁视在线视频|香蕉伊人不卡在线看|天天鲁啪视频在线,研究员

研究方向

有机高分子发光材料:高效固态荧光材料、纯有机室温磷光材料、非典型发光化合物  

荣誉奖励

2012 上海交通大学SMC-晨星青年学者奖励计划”优秀青年教师(B)类
2015 上海市青年科技启明星(A)类

2015 上海交通大学李兰馨青年教师奖

2017 上海交通大学晨星-副教授支持计划(A)类

2018 国家自然科学基金优秀青年科学基金

教学工作

《无机与分析化学》、《大学化学实验》、《有机化学实验》、PRP、大学生创新实践项目、毕业设计、莙政学者项目

部分论文

邀请综述  

4Wang, Y.; Zhao, Z.; Yuan, W. Z*. Intrinsic Luminescence from Nonaromatic Biomolecules ChemPlusChem 2020, 85, 1065.

3. Chen, X.; Wang, Y.; Zhang, Y.; Yuan, W. Z*. “Clustering-Triggered Emission of Nonconventional Luminophores Prog. Chem. 201931, 1560陈晓红, 王允中, 张永明, 袁望章. “非典型发光化合物的簇聚诱导发光 化学进展 2019, 31, 1560http://manu56.magtech.com.cn/progchem/CN/Y2019/V31/I11/1560 

2Yuan, W. Z*.; Zhang, Y*. Nonconventional Macromolecular Luminogens with Aggregation-Induced Emission Characteristics J. Polym. Sci. Polym. Chem. 201755, 560.

1Wang, C.-R.; Gong, Y.-Y.; Yuan, W.-Z*.;  Zhang, Y.-M*. Crystallization-Induced Phosphorescence of Pure Organic Luminogens Chin. Chem. Lett. 201627, 1184.

研究论文  

24. Wang, Y.; Tang, S.; Wen, Y.; Zheng, S.; Yang, B.; Yuan, W. Z*“Nonconventional Luminophores with Unprecedented Efficiencies and Color-Tunable Afterglows"Mater. Horiz. 2020DOI: 10.1039/D0MH00688B.

23. Zheng, S.; Zhu, T.; Wang, Y.; Yang, T.; Yuan, W. Z*. “Accessing Tunable Afterglows from Highly Twisted Nonaromatic Organic AIEgens via Effective Through-Space Conjugation Angew. Chem. Int. Ed. 2020, 59, 10018.

22. Zhou, Q.; Yang, T.; Zhong, Z.; Kausar, F.; Wang, Z.; Zhang, Y*.; Yuan, W. Z*. “A Clustering-Triggered Emission Strategy Towards Tunable Multicolor Persistent Phosphorescence Chem. Sci. 202011, 2926.

21. Zheng, S.; Hu, T.; Bin, X.; Wang, Y.; Yi, Y*.; Zhang, Y.; Yuan, W. Z*. Clustering-Triggered Efficient Room Temperature Phosphorescence from Nonconventional Luminophores ChemPhysChem 202021, 36.

20. Wang, Q.; Dou, X.; Chen, X.; Zhao, Z.; Wang, S.; Wang, Y.; Sui, K.; Tan, Y*.; Gong, Y.; Zhang, Y.; Yuan, W. Z*. Reevaluating Protein Photoluminescence: Remarkable Visible Luminescence upon Concentration and Insight into the Emission Mechanism Angew. Chem. Int. Ed. 201958, 12667.

19. He, Z.; Gao, H.; Zhang, S.; Zheng, S.; Wang, Y.; Zhao, Z.; Ding, D*.; Yang, B*.; Zhang, Y*.; Yuan, W. Z*. Achieving Persistent, Efficient, and Robust Room-Temperature Phosphorescence from Pure Organics for Versatile Applications Adv. Mater. 201931, 1807222.  

18. Liu, Y.; You, L. H.; Lin, F. X.; Fu, K.; Yuan, W. Z*.; Chen, E.-Q.; Yu, Z.-Q*.; Tang, B. Z*. Highly Efficient Luminescent Liquid Crystal with Aggregation-Induced Energy Transfer ACS Appl. Mater. Interfaces 201911, 3516. 

17. Zhou, Q.; Wang, Z.; Dou, X.; Wang, Y.; Liu, S.; Zhang, Y.; Yuan, W. Z*. “Emission Mechanism Understanding and Tunable Persistent Room Temperature Phosphorescence of Amorphous Nonaromatic Polymers Mater. Chem. Front. 20193, 257

16. Chen, X.; He, Z.; Kausar, F.; Chen, G.; Zhang, Y*.; Yuan, W. Z*. “Aggregation-Induced Dual Emission and Unusual Luminescence beyond Excimer Emission of Poly(ethylene terephthalate) Macromolecules 201851, 9035

15. Wang, Y.; Bin, X.; Chen, X.; Zheng, S.; Zhang, Y.; Yuan, W. Z*. Emission and Emissive Mechanism of Nonaromatic Oxygen Clusters Macromol. Rapid Commun. 201839, 1800528.

14Chen, X.; Luo, W.; Ma, H.; Peng, Q.; Yuan, W. Z*.; Zhang, Y*. Prevalent Intrinsic Emission from Nonaromatic Amino Acids and Poly(Amino Acids) Sci. China Chem. 201861, 351.

13Dou, X.; Zhou, Q.; Chen, X.; Tan, Y*.; He, X.; Lu, P.; Sui, K.; Tang, B. Z*.; Zhang, Y.; Yuan, W. Z*. “Clustering-Triggered Emission and Persistent Room Temperature Phosphorescence of Sodium Alginate” Biomacromolecules 201819, 2014.

12. Yuan, W. Z*.; Bin, X.; Chen, G.; He, Z.; Liu, J.; Ma, H.; Peng, Q.; Wei, B.; Gong, Y.; Lu, Y.; He, G*.; Zhang, Y*. Achieving Hybridized Local and Charge-Transfer Excited State and Excellent OLED Performance through Facile Doping Adv. Optical Mater. 201751700466.

11. Zhou, Q.; Cao, B.; Zhu, C.; Xu, S.; Gong, Y.; Yuan, W. Z*.; Zhang, Y*. “Clustering-Triggered Emission of Nonconjugated Polyacrylonitrile” Small 201612, 6586. 

10Gong, Y.; Chen, G.; Peng, Q.; Yuan, W. Z*.;  Xie, Y.; Li, S.; Zhang, Y*.; Tang, B. Z*. “Achieving Persistent Room Temperature Phosphorescence and Remarkable Mechanochromism from Pure Organic Luminogens” Adv. Mater. 201527, 6195.

9Chen, G.; Li, W.; Zhou, T.; Peng, Q.; Zhai, D.; Li, H.; Yuan, W. Z*.;  Zhang, Y*.; Tang, B. Z*. “Conjugation-Induced Rigidity in Twisting Molecules: Filling the Gap between Aggregation-Caused Quenching and Aggregation-Induced Emission” Adv. Mater. 201527, 4496.

8. Gong, Y.; Zhao, L.; Peng, Q.; Fan, D.; Yuan, W. Z*.;  Zhang, Y*.; Tang, B. Z.“Crystallization-Induced Dual Emission from Metal- and Heavy Atom-Free Aromatic Acids and Esters” Chem. Sci. 20156, 4438.

7. Yuan, W. Z.; Tan, Y.; Gong, Y.; Lu, P.; Lam, J. W. Y.; Shen, X. Y.; Feng, C.; Sung, H. H-Y.; Lu, Y.; Williams, I. D.; Sun, J. Z.; Zhang Y.; Tang, B. Z. “Synergy between Twisted Conformation and Effective Intermolecular Interactions: Strategy for Efficient Mechanochromic Luminogens with High Contrast” Adv. Mater. 201325,2837.

6. Gong, Y.; Tan, Y.; Liu, J.; Lu, P.; Feng, C.; Yuan, W. Z*.; Lu, Y.; Sun, J. Z.; He, G*.; Zhang, Y*. “Twisted D–pi–A Solid Emitters: Efficient Emission and High Contrast Mechanochromism” Chem. Commun201349, 4009.

5. Yuan, W. Z.; Gong, Y.; Chen, S.; Shen, X. Y.;  Lam, J. W. Y.; Lu, P.; Lu, Y.; Wang, Z.; Hu, R.; Xie, N.; Kwok, H. S.; Zhang, Y.; Sun, J. Z.; Tang, B. Z. “Efficient Solid Emitters with Aggregation-Induced Emission and Intramolecular Charge Transfer Characteristics: Molecular Design, Synthesis, Photophysical Behaviors, and OLED Application” Chem. Mater201224, 1518.

4. Yuan, W. Z.; Chen, S.; Lam, J. W. Y.; Deng, C.; Lu, P.; Sung, H. H-Y.; Williams, I. D.; Kwok, H. S.; Zhang, Y.; Tang, B. Z. “Towards High Efficiency Solid Emitters with Aggregation-Induced Emission and Electron-Transport Characteristics” Chem. Commun201147, 11216. 

3. Yuan, W. Z.; Yu, Z.-Q.; Tang, Y. H.; Lam, J. W. Y.; Xie, N.; Lu, P.; Chen, E.-Q.; Tang, B. Z. “High Solid-State Efficiency Fluorescent Main Chain Liquid Crystalline Polytriazoles with Aggregation-Induced Emission Characteristics” Macromolecules 201144, 9618.

2. Yuan, W. Z.; Lu, P.; Chen, S.; Lam, J. W. Y.; Wang, Z.; Liu, Y.; Kwok, H. S.; Ma, Y.; Tang, B. Z. “Changing the Behavior of Chromophores from Aggregation-Caused Quenching to Aggregation-Induced Emission: Development of Highly Efficient Light Emitters in the Solid State” Adv. Mater2010, 22, 2159.

1. Yuan, W. Z.; Shen, X. Y.; Zhao, H.; Lam, J. W. Y.; Tang, L.; Lu, P.; Wang, C. L.; Liu, Y.; Wang, Z. M.; Zheng, Q.; Sun, J. Z.; Ma, Y. G.; Tang, B. Z. “Crystallization-Induced Phosphorescence of Pure Organic Luminogens at Room Temperature” J. Phys. Chem. C 20101146090.

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