科院考研推荐链接:
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1. Synthetic methodology of conjugated materials
a. Develop new methodologies to synthesize conjugated materials
b. Develop novel catalysts for C-X bond activation and formation
2. Low dimension materials (organic conjugated materials, inorganic two dimensional materials etc) for energy, biology, and environmental application
a. Develop novel low dimension materials for solar cells, TFTs, and sensors etc.
b. Understand the fundamental photophysics mechanism in solid state materials and devices.
2010年10月-2013年10月,研究科学家,康菲石油公司(菲利普斯66石油公司)全球研发中心,Bartlesville, OK, USA
2008年10月-2010年9月,博士后(合作导师:Tobin J. Marks),美国西北大学,Evanston, IL, UAS
专利
1. Marks, T. J.; Facchetti, A.; Huang, H.; Chen, Z.; Alkoxylethane Semiconducting Compounds and Device Incorporating Same, US 8598305.
2. Wang, S.; Shi, C.; Chen, R.; Zhang, J.; Wang, W.; Wu, Y.; Huang, H.; Palkar, A.; He, T. Synthesis Photovoltaic Conjugated Polymers, US 61/599419.
3. Huang, H. Process of Novel Donor Building Blocks for Organic Solar Cells, US 8895751.
4. Huang, H. Structure of Novel Donor Building Blocks for Organic Solar Cells, US 8703960.
5. Wang, W.: Shi, C.; Chen, R.; Yang, J.; Wu, Y.; Huang, H.; Woody, K.; Bullock, J.; Palkar, A.; He, T. Furan and Selenophene Derivatized Benzo[1,2-b:4,5-b’] Dithiophene-thienothiophene Based Conjugated Polymers For High-efficiency Organic Solar Cells, P66-00003, filed.
6. Woody, K.; Bullock, J.; Huang, H.; Palkar, A.; He, T.; Shi, C.; Chen, R.; Yang, J.; Daeffler, C.; Hawkins, J.; Wu, Y.; Wang, W. Anthracene Dithiophene Based Semiconducting Polymer for Photovoltaic Application. P66-00065, filed.
7. Shi, C.; Chen, R.; Yang, J.; Daeffler, C.; Hawkins, J.; Wu, Y.; Wang, W.; Woody, K.; Bullock, J.; Huang, H.; Palkar, A.; He, T.; Difluorothienothiophene Based Conjugated Polymer and Their Applications as Organic Semiconductors in Photovoltaic Cells, P66-00113
8. Huang, H.; Woody, K.; He, T.; et al, Compsition and Synthesis of Benzo[1,2-b:4,5-b]Dithiophene-thienothiophene Randomly Substituted Conjugated Polymers For Organic Solar Cells, P66-00121
9. Woody, K.; Huang, H.; He, T.; et al, Application of Benzo[1,2-b:4,5-b]Dithiophene-thienothiophene Randomly Substituted Conjugated Polymers For Organic Solar Cells, P66-00121
奖励
中科院前沿研究-青年拔尖人才, 2017
Emergying Investigator, JMCA, 2017
康菲石油公司Leadership Award
相关研究成果被美国主流媒体CNBC,Yahoo和学术媒体Phys.Org等和中国中央人民政府网和科教网等媒体广泛报道。
2019
72. You Chen, Qianqian Zhang, Mengzhen Du, Gongqiang Li, Zijie Li, Hui Huang, Yanfang Geng, Xiaoli Zhang, Erjun Zhou* Benzotriazole-Based p‑Type Polymers with Thieno[3,2‑b]thiophene π‑Bridges and Fluorine Substituents To Realize High VOC ACS Appl. Polym. Mater. 2019, 1, 906−913.
71. Yunxiao Xu, Liya Sun, Jianfei Wu, Weiyu Ye, Yusheng Chen, Shiming Zhang, Chunyang Miao, Hui Huang Thiophene: An Eco-friendly Solvent for Organic Solar Cells, Dyes and Pigments, in press.
70. Kaikai Wen, Xiaozhou Xu, Jun Chen, Lei Lv, Lifen Wu, Yi Hu, Xiaoxi Wu, Guozhen Liu, Aidong Peng, Hui Huang Triplet Tellurophene-based Semiconducting Polymer Nanoparticles for Near-Infrared-mediated Cancer Theranostics, ACS Applied Materials&Interfaces, 2019, 19, 17884-17893.
69. Lei Lv, Jinde Yu, Xinyu Sui, Jianfei Wu, Xiaohan Dong, Guanghao Lu, Xinfeng Liu, Aidong Peng, and Hui Huang Significant Enhancement of Responsivity of Organic Photodetectors upon Molecular Engineering, Journal of Materials Chemistry C, 2019, 7, 5739-5747.
68. Ting Zhu, Longfeng Jiang, Dr. Ying Li, Zengqi Xie, Zijie Li, Lei Lv, Hao Chen, Zhiyuan Zhao, Lang Jiang, Benzhong Tang, Hui Huang Converting Thioether Waste into Organic Semiconductors by Carbon--Sulfur Bond Activation, Angewandte Chemie International Edition, 2019, 58, 5044-5048.
67. Lei Yang, Linqing Qin, Yunxiao Xu, Huotian Zhang, Lei Lv, Kepeng Chen, Xinyu Sui, Yangguang Zhong, Yuan Guo, Feng Gao, Jianzhang Zhao, Yuhao Li, Xinfeng Liu, Yuanping Yi, Xinhui Lu, Aidong Peng, Hui Huang Sulfur vs Tellurium: the Heteroatom Effects on the Nonfullerene Acceptors, Science China Chemistry, in press.
66. 邓祎华,彭爱东,陈华杰*,黄辉*, 有机太阳能电池应用中基于苝二酰亚胺结构的小分子受体研究进展,《物理化学学报》,2019, 35, 461-471.
65. Yang, L.; Ye, P.; Gu, W.; Lv, L.; Chen, Y.; Dong, T.; Guan, Q.; Peng, A.*; Huang, H.* Simply Tuning the Electron Deficient Units to Achieve P- and N-type Conjugated Polymers for Organic Solar Cells, Dyes and Pigments, 2019, 162, 728-733.
64. Ye, P.: Chen, Y.; Wu, J.; Wu, X.; Xu, X.; Li, Z.; Hong, S.; Sun, M.; Peng, A.;* and Hui Huang*Combination of Noncovalent Conformational Locks and Side Chain Engineering to Tune Crystallinity of Nonfullerene Acceptors for High-Performance P3HT based Organic Solar Cells, Materials Chemistry Frontiers, 2019, 3, 64-69.
63. Wu, J.; Xu, Y.; Yang, Z.; Chen, Y.; Sui, X.; Yang, L.; Ye, P.; Zhu, T.; Wu, X.; Liu, X.; Cao, H.;Peng, A.; Huang, H.* Simultaneous Enhancement of Three Parameters of P3HT-based Organic Solar Cells with One Oxygen Atom, Advanced Energy Materials, 2019, 9, 1803012.
2018
62. Xing, W.; Ye, P.; Lu, J.; Wu, X.; Chen, Y.; Zhu, T.; Peng, A.; Huang, H.;* Tellurophene-based Metal-Organic Framework Nanosheets for High-performance Organic Solar Cells, Journal of Power Sources, 2018, 401, 13-19.
61. Yu, S.; Chen, Y.; Wu, J.; Xia, D.; Hong, S.; Wu, X.; Yu, J.; Zhang, S.; Peng, A.;* Huang, H.* An Iris-like Acceptor with Most PDI Units for Organic Solar Cells, ACS Applied Materials&Interfaces, 2018, 10, 28812-28818.
60. Yu, S.; Peng, A.; Zhang, S.*; Huang, H.*; Noncovalent Conformational Locks in Organic Semiconductors, Science China Chemistry, 2018, 61, 1359-1367.
59. Zhu, T.; Wu, X.; Yang, X.; Sharma, B.; Li,, N.; Huang, J.; Wang, W.; Xing, W.; Zhao, Z.; Huang, H.* One-Pot Catalytically Cleave C=S Double Bonds by Pd Catalysts at Room Temperature, Inorganic Chemistry, 2018, 57, 9266-9273.
58. Dong, T.; Wen, K.; Chen, J.; Xie, J.; Fan, W.; Ma, H.; Yang, L.; Wu, X.; Xu, F.; Peng, A.; Huang, H.* Significant Enhancement of Photothermal and Photoacoustic Efficencies for Conjugated Polymer Nanoparticles through Simply Molecular Engineering, Advanced Functional Materials, 2018, 28, 1800135.
57. Yang, L.; Ye, P.; Li, W.; Zhang, W.; Guan, Q.; Ye, C.; Dong, T.; Wu, X.; Zhao, W.; Gu, X.; Peng, Q.*; Tang, B.-Z.*; Huang, H*Uncommon Aggregation Induced Emission Molecular Materials with Highly Planar Conformations, Advanced Optical Materials, 2018, 6, 1701394.
56. 黄辉,有机太阳能电池的发展、应用与展望,工程研究,2017, 6, 547-557.
55. Yang, L.; Gu, W.; Lv, L.; Chen, Y.; Ye, P.; Wu, J.; Hong, L.; Peng, A.; Huang, H.* Triplet Tellurophene-based Acceptors for Organic Solar Cells, Angewandte Chemie International Edition, 2018, 57, 1096-1102.
54. Yang, L.; Gu, X.; Yang, Y.; Hong, L.; Zhang, X.; Xiao, Y.; Wu, X.; Peng, A.* Huang, H.*A Highly Planar Nonfullerene Acceptor with Multiple Noncovalent Conformational Locks for Efficient Organic Solar Cells, Small Methods, 2018, 2, 1700330.
53. Zhang, K.; Lv, L.; Wang, X.; Mi, Y.; Chai, R.; Liu, X.; Shen, G.;* Peng, A.; Huang, H.* Tellurophene-Based Random Copolymers for High Responsivity and Detectivity Photodetectors, ACS Applied Materials&Interfaces, 2018, 10, 1917-1924.
2017
52. Ye, P.;Chen,Y.;Wu,J.;Wu,X.;Yu,S.;Xing,X.;Liu,Q.;Jia,X.; Peng, A.;* Huang, H*Wide Bandgap Small Molecular Acceptor with Noncovalent Conformational Locks for Low Energy Loss Organic Solar Cell, Journal of Materials Chemistry, C, 2017, 5, 12591-12596.
51. Chen, Y.;Ye, P.;Jia, X.;Gu, W.; Xu, X.;Wu, X.;Wu, J.; Liu, F.; Zhu, Z.-G.;* Huang, H.*TuningVocfor High PerformingOrganic Ternary Solar Cells with Non-fullerene Acceptor Alloys, Journal of Materials Chemistry, A, 2017, 5, 19697-19702.
50. Yang, L.; Gu, W.; Hong, L.; Mi, Y.; Liu, F.; Liu, M.; Yang, Y.; Sharma, B.; Liu, X.; Huang, H.*High Performing Ternary Solar Cells through Förster Resonance Energy Transfer between Non-fullerene Acceptors,ACS Applied Materials&Interfaces, 2017, 9, 26928-26936.
49. Yu, S.; Chen, Y.; Yang, L.; Ye, P.; Wu, J.; Yu, J.; Zhang, S.;* Gao, Y.;* Huang, H.*Significant Enhancement of Photovoltaic Performances Through Introducing S∙∙∙N Conformational Locks, Journal of Materials Chemistry, A, 2017, 5, 21674-21678.
48. Xu, X.;Xing, W.; Chen, Y,; Liu, F.; Wu, X.; Dong, T.; Ye, P.; Liu, Z.*; Huang, H.* The Influence of Numbers of Subunits on the Photovoltaic Performances of Non-fullerence Acceptors, Synthetic Metals, 2017, 231C, 19-24.
47. Xing, W.; Chen, Y,; Wu, X.; Xu, X.; Ye, P.; Zhu, T.; Guo, Q.; Yang, L.; Li, W.; Huang, H.*PEDOT:PSS-Assisted Exfoliation and Functionalization of 2D Nanosheets for High-Performance Organic Solar Cells, Advanced Functional Materials, 2017, 27, 1701622.
46. Yang, F.; Li, C.; Lai, W.; Zhang, A.; Huang, H.; Li, W.*Halogenated Conjugated Molecules for Ambipolar Field-Effect Transistors and Non-Fullerene Organic Solar Cells,Materials Chemistry Frontiers, 2017, 1, 1389-1395.
45. Huang, H.*; Yang, L.; Sharma, B. Recent Advances in Ternary Organic Solar Cells, Journal of MaterialsChemistry, A,2017, 5, 11501-11517.
44.Wang, X.;Lv, L.; Gu, W.; Wang, X.; Dong, T.; Yang, Z.*; Cao, H.*; Huang, H.* Novel Triphenylamine-based Copolymers for All Polymer Solar Cells, Dyes and Pigments, 2017, 150, 141-149.
43. Wang, X.; Deng, W.; Chen, Y.; Wang, X.; Ye, P.; Wu, X.; Yan, C.; Zhan, X.; Liu, F.;* Huang, H.*Fine Tuning Solid State Packing and Significant Improving Photovoltaic Performance of Conjugated Polymers Through Side Chain Engineering via Random Polymerization, Journal of Materials Chemistry, A, 2017, 5585-5593.
42. Lv, L.; Wang, X.; Dong, T.; Wang, X.; Wu, X.; Yang, L.; Huang, H.* Significantly Improving Efficiency of PSCs through Incorporation of Noncovalent Conformational Locks, Materials Chemistry Frontiers, 2017, 1, 1317-1323.
41. Gu,W.;Yang,L.;Chen, Y.;Wang, X.;Zhang, H.;Hou, J.;Zhu Z.;*Huang, H.*Ternary Blend Polymer Solar Cells with Two Non-fullerene Acceptors as Electron Cascade Materials, Dyes and Pigments, 2017, 141, 388-393.
40. Huang, H.*; Facchetti, A.*; Marks, T. J.* Organic and Polymeric Semiconductors with Noncovalent Conformational Locks, Chemical Reviews, 2017, 117, 10291–10318.
39. Dong, T.; Lv, L.; Feng, L.; Deng, W.; Ye, P.; Yang, B.; Facchetti, A.;* Dong, H.*; Huang, H.* Noncovalent Se…O Conformational Locks for Constructing High Performing Opto-electronic Conjugated Polymers, Advanced Materials, 2017, 29, 1606025.
38. Jiang, X.; Huang, H.;* Chai, Y.; Lohr, T.; Yu, S.-Y.;* Lai, W.*; Pan, Y.;* Delferro, M.;* Marks, T. J.* Hydrolytic Cleavage of Both CS2 Carbon-Sulfur Bonds by Multinuclear Pd(II) Complexes at Room Temperature, Nature Chemistry, 2017, 9, 188-193.
37. Chen, Y.; Ye, P.; Zhu, Z.; Wang, X.; Yang, L.; Xu, X.; Wu, X.; Dong, T.; Zhang, H.; Hou, J.; Liu, F.;* Huang, H.*Achieving High-Performance Ternary Organic Solar Cells Through Tuning Acceptor Alloy, Advanced Materials, 2017, 201603154.
2016
36. Lv. L.; Wang, X.; Wang, X.; Dong, T.; Yang, L.; Yang, Z.; Huang, H.* Tellurophene-based N-type Copolymers for High Performance All Polymer Solar Cells, ACS Applied Materials&Interfaces, 2016, 8, 34620-34629.
35. Wang, X.; Lv, L.; Li, L.; Chen, Y.; Zhang, K.; Chen, H.; Shen, G.;* Huang, J.;* Yang, Z.;* Huang, H.* High-Performance All Polymer Photoresponse Devices Based on Novel A-A Conjugated Polymers, Advanced FunctionalMaterials, 2016, 26, 6306-6315.
34.Yang, L.; Chen, Y.; Chen, S.; Dong, T.; Deng,W.; Lv, L.; Yang, S.; Yan, H.; Huang, H.* Achieving High Performance Non-fullerene Organic Solar Cells throughTuning the Electron Deficient Building Blocks, Journal of Power Sources, 2016, 324, 538-546.
33. Xing, W.; Chen, Y.; Wang, X.; Lv, L.; Ouyang, X.; Ge, Z.; Huang, H.* MoS2Quantum Dots with Tunable Work Functions for High-performance Organic Solar Cells, ACS Applied Materials&Interfaces, 2016, 8, 26916-26923.
32.Zhang, J.; Zhang, X.; Xiao, H.; Li, G.; Liu, Y.; Li, C.;* Huang, H.; Chen, X.;*, Bo, Z.;* 1,8-Naphthalimide-based Planar Small Molecular Acceptor for Organic Solar Cells, ACS Applied Materials&Interfaces,2016,8, 5475–5483.
2015
31. Xiao, Z.; Dong, Q.; Tian, W.; Huang, H.;* Huang* J.; Efficiency Enhancement in Polymer Solar Cells with a Polar Small Molecule at Both Interface and in the Bulk Heterojunction Layer, IEEE Journal of Photovoltaics, 2015, 5, 1408-1413.
2014
30. Huang, H.; Chen, Z.; Ponce Ortiz, R.; Zhang, S.; Guo, X. Facchetti, A.*; Marks, T. J.* Alkoxy-Functionalized Thienyl-Vinylene Polymers for Field-Effect Transistors and All-Polymer Solar Cells. Advanced Functional Materials, 2014, 24, 2782-2793.