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个人简介

教育背景 2007-09--2010-06 中国科学院上海技术物理研究所 传感技术国家重点实验室 博士 2004-09--2007-06 华中科技大学 物理学院 工学硕士 2000-07--2004-07 济南大学 材料学院 学士 工作简历 2018-01~现在, 中国科学院青岛生物能源与过程研究所, 研究员 2013-01~2017-12,中国科学院青岛生物能源与过程研究所, 副研究员 2010-06~2012-12,中国科学院青岛生物能源与过程研究所, 助理研究员

研究领域

光电器件,器件物理 有机半导体材料 钙钛矿太阳能材料

近期论文

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Huang, Da, Hong, ChunXia, Han, JianHua, Zhao, Nie, Li, XiuHong, Bao, XiChang, Bian, FengGang, Huang, YuYing, Yang, ChunMing. In situ studies on the positive and negative effects of 1,8-diiodoctane on the device performance and morphology evolution of organic solar cells. NUCLEARSCIENCEANDTECHNIQUES[J]. 2021, 32(6): 23-35, http://dx.doi.org/10.1007/s41365-021-00893-z. Han, Chenyu, Jiang, Huanxiang, Wang, Pengchao, Yu, Lu, Wang, Jianxiao, Han, Jianhua, Shen, Wenfei, Zheng, Nan, Wen, Shuguang, Li, Yonghai, Bao, Xichang. An isomerized alkyl side chain enables efficient nonfullerene organic photovoltaics with good tolerance to pre/post-treatments. MATERIALS CHEMISTRY FRONTIERS[J]. 2021, 5(7): 3050-3060, http://dx.doi.org/10.1039/d0qm01037e. Liu, Xingpeng, Liang, Zezhou, Du, Sanshan, Tong, Junfeng, Li, Jianfeng, Zhang, Rongling, Shi, Xiaoyan, Yan, Lihe, Bao, Xichang, Xia, Yangjun. Non-Halogenated Polymer Donor-Based Organic Solar Cells with a Nearly 15% Efficiency Enabled by a Classic Ternary Strategy. ACS APPLIED ENERGY MATERIALS[J]. 2021, 4(2): 1774-1783, http://dx.doi.org/10.1021/acsaem.0c02912. Jiang, Huanxiang, Han, Chenyu, Li, Yonghai, Bi, Fuzhen, Zheng, Nan, Han, Jianhua, Shen, Wenfei, Wen, Shuguang, Yang, Chunming, Yang, Renqiang, Bao, Xichang. Rational Mutual Interactions in Ternary Systems Enable High-Performance Organic Solar Cells. ADVANCED FUNCTIONAL MATERIALS[J]. 2021, 31(3): http://dx.doi.org/10.1002/adfm.202007088. Yonghai Li, Lu Yu, Liangliang Chen, Chenyu Han, Huanxiang Jiang, Zitong Liu, Nan Zheng, Jiuxing Wang, Mingliang Sun, Renqiang Yang, Xichang Bao. Subtle Side Chain Triggers Unexpected Two-Channel Charge Transport Property Enabling 80%Fill Factors and Efficient Thick-Film Organic Photovoltaics. 创新(英文)[J]. 2021, 2(1): 100090-, http://lib.cqvip.com/Qikan/Article/Detail?id=7104965057. Wang, Xunchang, Wang, Jianxiao, Han, Jianhua, Huang, Da, Wang, Pengchao, Zhou, Lixue, Yang, Chunming, Bao, Xichang, Yang, Renqiang. Over 15% efficiency all-small-molecule organic solar cells enabled by a C-shaped small molecule donor with tailorable asymmetric backbone. NANO ENERGY[J]. 2021, 81: http://dx.doi.org/10.1016/j.nanoen.2020.105612. Han, Jianhua, Bao, Feng, Wang, Xunchang, Huang, Da, Yang, Renqiang, Yang, Chunming, Jian, Xigao, Wang, Jinyan, Bao, Xichang, Chu, Junhao. Identifying tunneling effects of poly(aryl ether) matrices and boosting the efficiency, stability, and stretchability of organic solar cells. CELL REPORTS PHYSICAL SCIENCE[J]. 2021, 2(5): http://dx.doi.org/10.1016/j.xcrp.2021.100408. Liu, Xingpeng, Ma, Ruijie, Wang, Yufei, Du, Sanshan, Tong, Junfeng, Shi, Xiaoyan, Li, Jianfeng, Bao, Xichang, Xia, Yangjun, Liu, Tao, Yan, He. Significantly Boosting Efficiency of Polymer Solar Cells by Employing a Nontoxic Halogen-Free Additive. ACS APPLIED MATERIALS & INTERFACES[J]. 2021, 13(9): 11117-11124, http://dx.doi.org/10.1021/acsami.0c22014. Li, Jianfeng, Wang, Ningning, Wang, Yufei, Liang, Zezhou, Peng, Yichun, Yang, Chunyan, Bao, Xichang, Xia, Yangjun. Efficient inverted organic solar cells with a thin natural biomaterial L-Arginine as electron transport layer. SOLAR ENERGY[J]. 2020, 196: 168-176, http://dx.doi.org/10.1016/j.solener.2019.11.101. Han, Jianhua, Shi, Wenwen, Wang, Xunchang, Cai, Jingwen, Hao, Xinyu, Shi, Jingying, Bao, Xichang, Yang, Renqiang. Functional transformation of four-bladed rylene propellers utilizing non-metal and d(8) metal core shifting strategy: significant impact on photovoltaic performance and electrocatalytic hydrogen evolution activity. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2020, 8(7): 3918-3932, https://www.webofscience.com/wos/woscc/full-record/WOS:000521346600039. Wen, Shuguang, Li, Yonghai, Zheng, Nan, Raji, Ibrahim Oladayo, Yang, Chunpeng, Bao, Xichang. High-efficiency organic solar cells enabled by halogenation of polymers based on 2D conjugated benzobis(thiazole). JOURNAL OF MATERIALS CHEMISTRY A[J]. 2020, 8(27): 13671-13678, http://dx.doi.org/10.1039/d0ta04734a. Vasilopoulou, Maria, Yusoff, Abd Rashid Bin Mohd, Kuganathan, Navaratnarajah, Bao, Xichang, Verykios, Apostolis, Polydorou, Ermioni, Armadorou, KonstantinaKalliopi, Soultati, Anastasia, Papadimitropoulos, Georgios, Haider, Muhammad Irfan, Fakharuddin, Azhar, Palilis, Leonidas C, Kennou, Stella, Chroneos, Alexander, Argitis, Panagiotis, Davazoglou, Dimitris. A carbon-doped tantalum dioxyfluoride as a superior electron transport material for high performance organic optoelectronics. NANO ENERGY[J]. 2020, 70: http://dx.doi.org/10.1016/j.nanoen.2020.104508. Wang, Xunchang, Han, Jianhua, Huang, Da, Wang, Jianing, Xie, Yuan, Liu, Zhilin, Li, Yonghai, Yang, Chunming, Zhang, Yong, He, Zhicai, Bao, Xichang, Yang, Renqiang. Optimized Molecular Packing and Nonradiative Energy Loss Based on Terpolymer Methodology Combining Two Asymmetric Segments for High-Performance Polymer Solar Cells. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(18): 20393-20403, https://www.webofscience.com/wos/woscc/full-record/WOS:000535170300026. Shahid, Bilal, Yuan, Xiyue, Wang, Qian, Zhou, Di, Wang, Ergang, Bao, Xichang, Zhu, Dangqiang, Yang, Renqiang. Low-bandgap polymers with quinoid unit as pi bridge for high-performance solar cells. JOURNAL OF ENERGY CHEMISTRY[J]. 2020, 40: 180-187, http://dx.doi.org/10.1016/j.jechem.2019.04.007. Li, Jianfeng, Wang, Yufei, Liang, Zezhou, Qin, Jicheng, Ren, Meiling, Tong, Junfeng, Yang, Chunyan, Yang, Chunming, Bao, Xichang, Xia, Yangjun. Non-toxic green food additive enables efficient polymer solar cells through adjusting the phase composition distribution and boosting charge transport. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2020, 8(7): 2483-2490, https://www.webofscience.com/wos/woscc/full-record/WOS:000517258900027. Soultati, Anastasia, Verykios, Apostolis, Panagiotakis, Stylianos, Armadorou, KonstantinaKalliopi, Haider, Muhammad Irfan, Kaltzoglou, Andreas, Drivas, Charalampos, Fakharuddin, Azhar, Bao, Xichang, Yang, Chunming, Yusoff, Abd Rashid bin Mohd, Evangelou, Evangelos K, Petsalakis, Ioannis, Kennou, Stella, Falaras, Polycarpos, Yannakopoulou, Konstantina, Pistolis, George, Argitis, Panagiotis, Vasilopoulou, Maria. Suppressing the Photocatalytic Activity of Zinc Oxide Electron-Transport Layer in Nonfullerene Organic Solar Cells with a Pyrene-Bodipy Interlayer. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(19): 21961-21973, http://dx.doi.org/10.1021/acsami.0c03147. Li, Jianfeng, Liang, Zezhou, Li, Xiaoming, Li, Hongdong, Wang, Yufei, Qin, Jicheng, Tong, Junfeng, Yan, Lihe, Bao, Xichang, Xia, Yangjun. Insights into Excitonic Dynamics of Terpolymer-Based High-Efficiency Nonfullerene Polymer Solar Cells: Enhancing the Yield of Charge Separation States. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(7): 8475-8484, https://www.webofscience.com/wos/woscc/full-record/WOS:000515214300067. Han, Jianhua, Wang, Xunchang, Huang, Da, Yang, Chunming, Yang, Renqiang, Bao, Xichang. Employing Asymmetrical Thieno3,4-dpyridazin-1(2H)-one Block Enables Efficient Ternary Polymer Solar Cells with Improved Light-Harvesting and Morphological Properties. MACROMOLECULES[J]. 2020, 53(15): 6619-6629, https://www.webofscience.com/wos/woscc/full-record/WOS:000562138100048. Han, Jianhua, Bao, Feng, Huang, Da, Wang, Xunchang, Yang, Chunming, Yang, Renqiang, Jian, Xigao, Wang, Jinyan, Bao, Xichang, Chu, Junhao. A Universal Method to Enhance Flexibility and Stability of Organic Solar Cells by Constructing Insulating Matrices in Active Layers. ADVANCED FUNCTIONAL MATERIALS[J]. 2020, 30(38): https://www.webofscience.com/wos/woscc/full-record/WOS:000548822900001. Dai, Zhikuang, Yang, Ailing, Bao, Xichang, Yang, Renqiang. Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu2O-BSA Nanoparticles Modified GCE. SENSORS[J]. 2019, 19(12): https://doaj.org/article/5741352a112e4e1c920c6efbaee06bb4. Bao Xichang. An Extraordinary Cyclohexylmethyl Side Chain Dominating the Polymeric Donor’s Packing Patterns and Energy Levels for Efficient Non-fullerene Polymer Solar Cells. Journal of Materials Chemistry A. 2019, Du, Zurong, Zhang, Yongchao, Yang, Chunming, Wang, Xunchang, Zhu, Dangqiang, Han, Liangliang, Bao, Xichang, Yang, Renqiang. Efficient all-polymer solar cells based on thiazole-bridged middle band-gap polymer donor: The influence of alkyl side chain on polymer-polymer miscibility and photovoltaic performance. SYNTHETIC METALS[J]. 2019, 254: 49-55, https://www.webofscience.com/wos/woscc/full-record/WOS:000476551000007. Kang, Xiao, Zhou, Di, Wang, Qian, Zhu, Dangqiang, Bao, Xichang, Yuan, Xiyue, Liu, Fushuai, Li, Yonghai, Qiao, Shanlin, Yang, Renqiang. Rational Design of Low Band Gap Polymers for Efficient Solar Cells with High Open-Circuit Voltage: The Profound Effect of Me and Cl Substituents with a Similar van Der Waals Radius. ACS APPLIED MATERIALS & INTERFACES[J]. 2019, 11(51): 48155-48161, http://dx.doi.org/10.1021/acsami.9b18278. Li, Chenchen, Cai, Mian, Bao, Xichang, Liu, Yanfang, Yang, Renqiang, Wan, Xiaobo. N-Alkylation vs. O-alkylation: influence on the performance of the photovoltaic cells based on a tetracyclic lactam polymer donor. RSC ADVANCES[J]. 2019, 9(22): 12310-12318, Wang, Xunchang, Dou, Keke, Shahid, Bilal, Liu, Zhilin, Li, Yonghai, Sun, Mingliang, Zheng, Nan, Bao, Xichang, Yang, Renqiang. Terpolymer Strategy toward High-Efficiency Polymer Solar Cells: Integrating Symmetric Benzodithiophene and Asymmetrical Thieno2,3-fbenzofuran Segments. CHEMISTRY OF MATERIALS[J]. 2019, 31(16): 6163-6173, https://www.webofscience.com/wos/woscc/full-record/WOS:000483435400014. Liu, Zhilin, Du, Zurong, Wang, Xunchang, Zhu, Dangqiang, Yang, Chunming, Yang, Wu, Qu, Xiaofei, Bao, Xichang, Yang, Renqiang. Simple perylene diimide based polymer acceptor with tuned aggregation for efficient all-polymer solar cells. DYES AND PIGMENTS[J]. 2019, 170: 107608-, http://dx.doi.org/10.1016/j.dyepig.2019.107608. Bao Xichang. Enhanced organic photovoltaic performance through modulating vertical composition distribution and promoting crystallinity of the photoactive layer by diphenyl sulfide additive. ACS Applied Materials & Interfaces. 2019, Zhu, Qianqian, Liu, Deyu, Lu, Zhou, Gu, Chunyang, Zhang, Kaili, Bao, Xichang, Li, Qun, Yang, Renqiang. Length evolution of fused-ring electron acceptors toward optimal blend morphology in polymer solar cells incorporating asymmetric benzodithiophene-based donors. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2019, 7(9): 4823-4828, http://dx.doi.org/10.1039/c8ta11363g. Li, Jianfeng, Wang, Yufei, Liang, Zezhou, Wang, Ningning, Tong, Junfeng, Yang, Chunming, Bao, Xichang, Xia, Yangjun. Enhanced Organic Photovoltaic Performance through Modulating Vertical Composition Distribution and Promoting Crystallinity of the Photoactive Layer by Diphenyl Sulfide Additives. ACS APPLIED MATERIALS & INTERFACES[J]. 2019, 11(7): 7022-7029, https://www.webofscience.com/wos/woscc/full-record/WOS:000459642200035. Liu, Fushuai, Du, Zurong, Yuan, Xiyue, Bao, Xichang, Wang, Yingying, Zhang, Jun, Sun, Mingliang, Yang, Renqiang. A medium-band-gap polymer based alkoxyl-substituted benzoxadiazole moiety for efficient polymer solar cells. POLYMER[J]. 2019, 168: 1-7, http://dx.doi.org/10.1016/j.polymer.2019.01.087. Huang, Da, Bian, Fenggang, Zhu, Dangqiang, Bao, Xichang, Hong, Chunxia, Zhou, Ping, Huang, Yuying, Yang, Chunming. Ternary Solar Cells Employing Thieno3,4-bthiophene-Based Copolymer Offer High Performance with Large Current Density and Fine-Tuned Morphology. JOURNAL OF PHYSICAL CHEMISTRY C[J]. 2019, 123(24): 14976-14984, https://www.webofscience.com/wos/woscc/full-record/WOS:000472800500012. Saparbaev, Aziz, Gao, Chenglin, Zhu, Dangqiang, Liu, Zhilin, Qu, Xiaofei, Bao, Xichang, Yang, Renqiang. Efficient inverted all inorganic CsPbI3 planar solar cells via twice-coating in air condition. JOURNAL OF POWER SOURCES[J]. 2019, 426: 61-66, http://dx.doi.org/10.1016/j.jpowsour.2019.04.025. Wang, Yufei, Liang, Zezhou, Li, Xiaoming, Qin, Jicheng, Ren, Meiling, Yang, Chunyan, Bao, Xichang, Xia, Yangjun, Li, Jianfeng. Self-doping n-type polymer as a cathode interface layer enables efficient organic solar cells by increasing built-in electric field and boosting interface contact. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2019, 7(36): 11152-11159, https://www.webofscience.com/wos/woscc/full-record/WOS:000487025600008. Uranbileg, Nergui, Gao, Chenglin, Yang, Chunming, Bao, Xichang, Han, Liangliang, Yang, Renqiang. Amorphous electron donors with controllable morphology for non-fullerene polymer solar cells. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2019, 7(35): 10881-10890, https://www.webofscience.com/wos/woscc/full-record/WOS:000485911100014.

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