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[专家学者] 上海科技大学物质科学与技术学院任毅

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发表于 2020-8-4 10:48:35 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
任毅,博士,上海科技大学。2012年4月毕业于加拿大卡尔加里大学,获得化学博士学位。2012年6月并获得普林斯顿大学pccm-mrsec奖金资助,并进入美国普林斯顿大学化工系从事博士后研究(导师:lynn loo)。2016年2月至2017年1月在美国罗格斯大学化学系进行博士后研究(导师:frieder jäkle)。2017年2月至2017年12月在美国宾夕法尼亚州立大学化学系从事博士后研究(导师:美国工程院院士harry r. allcock)。2018年1月加入上海科技大学物质科学与技术学院,任助理教授。

任毅,助理教授/研究员/博士生导师
通讯地址:2号楼406D
电子邮件:renyi@shanghaitech.edu.cn
2018年1月 - 现在  任助理教授/研究员/博士生导师                                          上海科技大学物质科学与技术学院
2017年2月 - 2017年12月 博士后 (导师:美国工程院院士Harry R. Allcock)  美国宾夕法尼亚州立大学化学系
2016年2月 - 2017年1月 博士后 (导师:Frieder Jäkle)                                       美国罗格斯大学化学系
2012年6月 - 2015年1月  博士后 (导师:Lynn Loo)                                           美国普林斯顿大学化工系
2007年9月 - 2012年4月 博士 (导师:Thomas Baumgartner)                             加拿大卡尔加里大学




所获荣誉       
2012 - 2015        PCCM-MRSEC Postdoctoral Fellowship, Princeton University
.
2012                   Chinese Government Award for Outstanding Self-Financed Students Abroad
                           (中国政府国家自费留学生奖学金)
2012                   Graduate Student Travel Award, University of Calgary

2011 - 2012        Talisman Energy Graduate Scholarship in Energy & Related Studies, Alberta
2011                   Graduate Faculty Council Scholarship - Doctoral
2008 - 2011        Alberta Ingenuity Graduate Student Scholarship in Nanotechnology, Alberta
2007                   Excellent Graduate Student, Jilin University




研究介绍       
研究方向:主族元素合成化学 、有机材料化学与物理、高分子化学与物理
本课题组以“主族元素”有机合成化学为基础,构建新型光电材料,探索它们在能源材料领域中的潜在应用。主要研究内容包括:(1)设计并合成含“硼、氮、磷、硫”等主族元素的分子化合物、超分子化合物、高分子聚合物。(2)确定其化学结构-物理性质-器件功能之间关系,探索如何利用“主族元素” 调节、优化材料的光电学、磁学、力学性质的规律。(3)利用“主族元素”独特的化学结构和电子结构,开发自组装杂化纳米材料,并应用于柔性电子器件。




论文
Independent Publications:
31. Hybrid Polyphosphazene–Organosilicon Polymers as Useful Elastomers
C. Tong, S. McCarthy, Z. Li, J. Guo, Q. Li, C. N. Pacheco, Y. Ren, H. R. Allcock, ACS Applied Polymer Materials 2019, 7, 1881.
30. Polyphosphazenes and Cyclotriphosphazenes with Propeller-Like Tetraphenylethyleneoxy Side Groups: Tuning Mechanical and Optoelectronic Properties;
Y. Ren, K. Yang, D. Shan, C. Tong, H. R. Allcock, Macromolecules, 2018, 51, 9974.
29. Molecular Engineering of Polyphosphazenes and SWNT Hybrids with Potential Applications as Electronic Materials;
Y. Ren, Z. Li, H. R. Allcock, Macromolecules, 2018, 5, 5011.
PhD & Postdoc publications:
28. p-π Conjugated Polymers Based on Stable Triarylborane with n-Type Behavior in Optoelectronic Devices;
B. Meng, Y. Ren, J. Liu, F. Jäkle, L. Wang, Angew. Chem. Int. Ed. 2018, 8, 2183.
27. Incorporation of Group 13 Elements into Polymers, “Main Group Strategies towards
Functional Hybrid Materials”;
Y. Ren, F. Jäkle, 2018 John Wiley & Sons Lt.
26. Hybrid conjugated polymers with alternating dithienosilole or dithienogermole and tricoordinate boron units;
Adachi, Y. Ooyama, Y. Ren, X. Yin, F. Jäkle, J. Ohshita, Polym. Chem. 2018, 10.1039/C7PY01790A.
25. Pyridalthiadiazole acceptor-functionalized triarylboranes with multi-responsive optoelectronic characteristics;
X. Yin#, K. Liu#, Y. Ren, R. A. Lalancette, Y.-L. Loo, F. Jäkle, Chemical Science, 2017, 8, 5497.
24. [d]-Carbond-Carbon Double Bond Engineering in Diazaphosphepines: Modulating the Chemical and Electronic Structures of Heteropines;
Y. Ren, M. Sezen, F. Gao, F. Jäkle, Y.-L. Loo, Chemical Science, 2016, 7, 4211.
23. Cooperative Self-Assembly of Phosphole-Lipids and SWCNTs;
Y. Ren, J. Gao, A. Hailey, T. Baumgartner, Y.-L. Loo, Chem. Mater. 2016, 28, 8407.
22. Bio-inspired Phosphole-Lipids: From Highly Fluorescent Organogels to Mechanically Responsive FRET;
Y. Ren, W. H. Kan, V. Thangadurai, T. Baumgartner, Angew. Chem. Int. Ed. 2012, 51, 3964. (Highlighted in the issue of the Canadian Chemical News, June 2012)
21. External-Stimuli Responsive Photophysics and Liquid Crystal Properties of Self-Assembled “Phosphole-Lipids”;
Y. Ren, W. H. Kan, M. A. Henderson, P. G. Bomben, C. P. Berlinguette, V. Thangadurai, T. Baumgartner, J. Am. Chem. Soc. 2011, 133, 17014. (Highlighted in “Noteworthy Chemistry” Dec. 2011).
20. Dually Switchable Heterotetracenes: Addressing the Photophysical Properties and Self-Organization of the P-S System;
Y. Ren, T. Baumgartner, J. Am. Chem. Soc. 2011, 133, 1328.
19. Merging Thiophene with Boron: New Building Blocks for Conjugated Materials;
Y. Ren, F. Jäkle, Dalton Trans. 2016, 45, 13996.
18. A Structure-Property Study Toward π-Extended Phosphole Chromophores with Ambipolar Redox Properties;
Y. Ren, T. Baumgartner, Can. J. Chem. 2016, 94, 297.
17. Self-Assembly of Axially Functionalized Subpthalocyanines in Thin Films;
Y. Ren, A. M. Hiszpanski, Y.-L. Loo, Chem. Mater. 2015, 27, 4008.
16. Isoindigo-Containing Small Molecules for Organic Solar Cells: Effect of Backbone Extension on Photophysics, Molecular Organization, and Device Performance;
Y. Ren, A. Hailey, A. M. Hiszpanski, Y.-L. Loo, Chem. Mater. 2014, 26, 6570.
15. Fluorinated and Hydrogenated Self-Assembled Monolayers (SAMs) on Anodes: Effects of SAM Chemistry of Devices Characteristics of Polymer Solar Cells;
H. Wang, J. M. Mativetsky, Y. Ren, E. D. Gomez, E. D.; C. Jaye, J. Schwartz, D. A. Fischer, Y.-L. Loo, Org. Electron. 2014, 15, 3333.
14. Structure-Property Relationship Study of Substitution Effects on Isoindigo-Based Model Compounds as Electron Donors in Organic Solar Cells;
Y. Ren, A. M. Hiszpanski, L. Whittaker-Brooks, Y.-L. Loo, ACS Appl. Mater. Interfaces, 2014, 6, 14533.
13. P-Terthienyl Functionalized Dithieno[3,2-b:2’,3’-d]Phospholes; C. J. Chua, Y. Ren, M. Stolar, S. Xing, T. Linder, T. Baumgartner, Eur. J. Inorg. Chem. 2013, 10, 1767.
12. Molecular Engineering of the Physical Properties of Highly Luminescent π-Conjugated Phospholes; Y. Ren, F. Biegger, T. Baumgartner, Journal of Physical Chemistry C, 2013, 117, 4748.
11. Perfluorophenylene-Bridged Bisphospholes: Synthesis and Unexpected Photophysical Properties; Y. Ren, A. Orthaber, R. Pietschnig, T. Baumgartner, Dalton Trans. 2013, 42, 5314.
10. Structure-Property Studies Towards the Stimuli-Responsive Behavior of Phosphole-Lipids; Y. Ren, T. Baumgartner, Inorg. Chem. 2012, 51, 2669.
9. Combining Form with Function – The Dawn of Phosphole-Based Functional Materials; Invited Perspective, Y. Ren, T. Baumgartner, Dalton Trans. 2012, 41, 7792.
8. Charge-Transfer Properties of Lateral Triphenylamine-Dithienophosphole Diads; C. J. Chua, Y. Ren, T. Baumgartner, Org. Lett. 2012, 14, 1588. Highlighted in SYNFACTS, June 2012.
7. Structure-Property Studies of Bichromophoric, PAH-Functionalized Dithieno[3,2-b:2’3’-d]Phospholes; C. J. Chua, Y. Ren, T. Baumgartner, Organometallics, 2012, 31, 2425.
6. Ladder-Type π-Conjugated 4-Hetero-1,4-Dihydrophosphinines: A Structure-Property Study; Y. Ren, T. Baumgartner, Chem. Asian J. 2010, 8, 1918.
5. Synthesis, Structures, Photoluminescent and Electroluminescent Properties of Boron Complexes with Anilido-Imine Ligands; X. M. Liu, Y. Ren, H. Xia, X. Fan, Y. Mu, Inorg. Chim. Acta, 2010, 363, 1441.
4. Synthesis and Properties of Ladder-Type 1,4-Dihydro-1,4-Phosphasilins; Y. Ren, T. Linder, T. Baumgartner, Can. J. Chem. 2009, 87, 1222.
3. Fluorinated Dithieno[3,2-b:2’,3’-d]Phospholes with Highly Stabilized LUMO Levels; Y. Ren, Y. Dienes, S. Hettel, M. Parvez, B. Hoge, T. Baumgartner, Organometallics, 2009, 28, 734.
27. Boron Complexes with Chelating Anilido-Imine Ligands: Synthesis, Structures and Luminescent Properties; Y. Ren, X. M. Liu, W. Gao, H. Xia, L. Ye, Y. Mu, Eur. J. Inorg. Chem. 2007, 1808.
2. Synthesis, Structures, and Luminescent Properties of Aluminum Complexes with Chelating Anilido-Imine Ligands; X. M. Liu, H. Xia, W. Gao, L. Ye, Y. Mu, Q. Su, Y. Ren, Eur. J. Chem. 2006, 6, 1216.
1. Dialkylaluminum Complexes with Chelating Anilido-Imine Ligands: Synthesis, Structures, X. M. Liu, W. Gao, Y. Mu, G. H. Li, L. Ye, H., Xia, Y. Ren, S. H. Feng, Organometallics, 2005, 24, 1614.

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