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[2] Zhongqiang Zhang, Wenqing Liu, Tahir Rehman, Huan-Xin Ju, Jiangquan Mai, Xinhui Lu, Minmin Shi, Junfa Zhu, Chang-Zhi Li* and Hongzheng Chen*, Energy-level modulation of non-fullerene acceptors to achieve high-efficiency polymer solar cells at a diminished energy offset, Journal of Materials Chemistry A, 2017, 5, 9649-9654.
[3] Guobiao Xue, Xikang Zhao, Ge Qu, Tianbai Xu, Aristide Gumyusenge, Zhuorui Zhang, Yan Zhao, Ying Diao, Hanying Li*, and Jianguo Mei*, Symmetry breaking in side chains leading to mixed orientations and improved charge transport in isoindigo-alt-bithiophene based polymer thin films, ACS Applied Materials & Interfaces, 2017, 9, 25426-25433.
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[4] Bo Wang, Wenqing Liu, Huanbin Liu, Jiangquan Mai, Shiyong Liu, Hanying Li, Minmin Shi, Chang-Zhi Li* and Hongzheng Chen*, Electron acceptors with varied linkages between perylene diimide and benzotrithiophene for efficient fullerene-free solar cells, Journal of Materials Chemistry A, 2017, 5, 9396-9401.
[5] Shuhua Zhang, Muhammad Naeem Shah, Feng Liu*, Zhongqiang Zhang, Qin Hu, Thomas, P. Russell, Minmin Shi, Chang-Zhi Li*, and Hongzheng Chen*, Efficient and 1,8-diiodooctane-free ternary organic solar cells fabricater via nanoscale morphology tuning using small molecule dye additive, Nano Research, 2017, 10, 3765-3774.
doi.org/10.1007/s12274-017-1589-0
[6] Shida Yang, Weifei Fu, Zhongqiang Zhang, Hongzheng Chen and Chang-Zhi Li*, Recent advances in perovskite solar cells: Efficiency, stability and lead-free perovskite, Journal of Materials Chemistry A, 2017, 5, 11462-11482.
[7] Jingqi Xu, Wenqing Liu, Shiyong Liu, Jun Ling, Jiangquan Mai, Xinhui Lu, Chang-Zhi Li*, Alex K.-Y. Jen*, and Hongzheng Chen*, A-D-A small molecule donors based on pyrene and diketopyrrolopyrrole for organic solar cells, Science China Chemistry, 2017, 60, 561-569.
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[8] Zhongqiang Zhang, Zhengneng Jin, Weifei Fu, Minmin Shi, and Hongzheng Chen*, Phosphate ester side-chain-modified conjugated polymer for hybrid solar cells, Journal of Applied Polymer Science, 2017, 134, 45003.
[9] Neng Ye, Jielin Yan, Shuang Xie, Yuhan Kong, Tao Liang, Hongzheng Chen Mingsheng Xu*, Silver nanowire–graphene hybrid transparent conductive electrodes for highly efficient inverted organic solar cells, Nanotechnology, 2017, 28, 305402.
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[10] Qinfen Li, Jiake Wu, Ruihan Wu, Yujing Liu, Hongzheng Chen, Fei Huang*, and Hanying Li*, Enhanced performance of field-effect transistors based on C60 single crystals with conjugated polyelectrolyte, Science China Chemistry, 2017, 60, 490-496.
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[11] Huanbin Li, Guobiao Xue, Jiake Wu, Wenqiang Zhang, Zhuoting Huang, Zengqi Xie, Huolin L Xin, Gang Wu, Hongzheng Chen, and Hanying Li*, Long-range ordering of composites for organic electronics: TIPS-pentacene single crystals with incorporated nano-fibers, Chinese Chemical Letters, 2017, 28, 2121-2124.
doi.org/10.1016/j.cclet.2017.08.011
[13] Weitao Yang, Zhikai Yu, Wenqing Liu, Chang-Zhi Li*, and Hongzheng Chen*, Aqueous solution-processed NiOx anode buffer layers applicable for polymer solar cells, Journal of Polymer Science Part A: Polymer Chemistry, 2017, 55, 741-743.
[14] Fateh Ullah, Sun Qian, Weitao Yang, Muhammad Naeem Shah, Zhongqiang Zhang, Hongzheng Chen, Chang-Zhi Li*, Donor-acceptor (D-A) terpolymers based on alkyl-DPP and t-BocDPP moieties for polymer solar cells, Chinese Chemical Letters, 2017, 28, 2223-2226.
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[15] Tao Ye, XinYi Jin, Liao Chen, Chong Hu, Jie Ren, YuJing Liu, Gang Wu, LuJian Chen, Hongzheng Chen, and Hanying Li*, Shape change of calcite single crystals to accommodate interfacial curvature: Crystallization in presence of Mg2+ ions and agarose gel-networks, Chinese Chemical Letters, 2017, 28, 857-862.
doi.org/10.1016/j.cclet.2016.12.005
[16] Jiehuan Chen, Shida Yang, Wenqing Liu, Weifei Fu, and Hongzheng Chen*, Improved photovoltaic performance from high quality perovskite thin film grown with the assistance of PC71BM, Chinese Journal of Polymer Science, 2017, 35, 309-316.
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[17] Xinyi Jin, Yujing Liu, Jie Res, and Hanying Li*, Gel-network/single-crystal composites formed in gel media. Chinese Science Bulletin, 2017,62, 4113-4122.
[18] Jiang Huang, Hanyu Wang, Kangrong Yan, Xiaohua Zhang, Hongzheng Chen, Chang-Zhi Li,* and Junsheng Yu*, Highly efficient organic solar cells consisting of double bulk eeterojunction layers, Advanced Materials, 2017, 29, 1606729.
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[19] Jiang Huang, Xiaohua Zhang, Ding Zheng, Kangrong Yan, Chang-Zhi Li*, and Junsheng Yu*, Boosting Organic Photovoltaic Performance Over 11% Efficiency With Photoconductive Fullerene Interfacial Modifier, Solar RRL, 2017, 1,1600008.
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[20] Fateh Ullah, Hongzheng Chen, and Chang-Zhi Li*, Organic functional materials based buffer layers for efficient perovskite solar cells, Chinese Chemical Letters, 2017, 28, 503-511.
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[21] Muhammad Naeem Shah, Shuhua Zhang, Qian Sun, Fateh Ullah, Hongzheng Chen, and Chang-Zhi Li*, Narrow bandgap semiconducting polymers for solar cells with near-infrared photo response and low energy loss, Tetrahedron Letters, 2017, 58, 2975-2980.
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[22] Lijian Zuo, Shuhua Zhang, Minmin Shi, Hanying Li*, and Hongzheng Chen*, Design of charge transporting grids for efficient ITO-free flexible upscaled organic photovoltaics, Materials Chemistry Frontiers, 2017, 1, 304-309.
[23] Shuixing Li, Zhongqiang Zhang, Minmin Shi*, Chang-Zhi Li, and Hongzheng Chen*, Molecular electron acceptors for efficient fullerene-free organic solar cells, Physical Chemistry Chemical Physics, 2017, 19, 3440-3458.
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[25] Jingqi Xu, Wenqing Liu, Shiyong Liu, Jun Ling, Jiangquan Mai, Xinhui Lu, Chang-Zhi Li*, Alex K.-Y. Jen*, and Hongzheng Chen*, A-D-A small molecule donors based on pyrene and diketo-pyrrolopyrrole for organic solar cells, Science China Chemistry, 2017, 60, 561-569.
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[26] Huanle Chen, Weifei Fu, Chuyi Huang, Zhongqiang Zhang, Shuixing Li, Feizhi Ding, Minmin Shi, Chang-Zhi Li*, Alex K.-Y. Jen*, and Hongzheng Chen*, Molecular engineered hole-extraction materials to enable dopant-free, efficient p-i-n perovskite solar cells, Advanced Energy Materials, 2017, 1700012.
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[27] Cuixia Yuan, Wenqing Liu, Minmin Shi*, Shuixing Li, Yuzhou Wang, Huanle Chen, Chang-Zhi Li, and Hongzheng Chen*, A non-fullerene electron acceptor with a spirobifluorene core and four diketopyrrolopyrrole arms end capped by 4-fluorobenzene, Dyes and Pigments, 2017, 143, 217-222.
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[28] Xinqian Zhang, Gang Wu*, Shida Yang, Weifei Fu, Zhongqiang Zhang, Chen Chen, Wenqing Liu, Jielin Yan, Weitao Yang and Hongzheng Chen*, Vertically-oriented 2D layered perovskite solar cells with enhanced efficiency and good stability, Small, 2017, 13, 1700611.
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[29] Shuixing Li, Wenqing Liu, Chang-Zhi Li*, Minmin Shi and Hongzheng Chen*, Efficient organic solar cells with non-fullerene acceptors, Small, 2017, 13, 1701120.
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[30] Tang Liu, Wenqing Liu, Yuting Zhu, Shengping Wang, Gang Wu, and Hongzheng Chen*, All solution processed perovskite solar cells with Ag@Au nanowires as top electrode, Solar Energy Materials and Solar Cells, 2017, 171, 43-49.
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[31] Chen Chen, Xinqian Zhang, Gang Wu*, Hanying Li, and Hongzheng Chen, Visible-light ultrasensitive solution-prepared layered organic-inorganic hybrid perovskite field-effect transistor, Advanced Optical Materials, 2017, 5, 1600539.
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[32] Siqi Zhang, ZhenYu Liu, Weifei Fu, Feng Liu, Chuanming Wang, Chunqi Sheng, Yifei Wang, Ke Deng*, Qingdao Zeng*, Lijin Shu*, Junhua Wan*, Hongzheng Chen, and Thomas P. Russell, Donor-acceptor conjugated macrocycles: Synthesis and host-guest coassembly with fullerene toward photovoltaic applcation, ACS Nano, 2017, 11, 11701-11713.
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[33] Tao Liang, Chunyan Luan, Hongzheng Chen, and Mingsheng Xu*, Exploring oxygen in graphene chemical vapor deposition synthesis, Nanoscale, 2017, 9, 3719-3735.
[34] Tao Liang, Shuang Xie, Weifei Fu, Yu Cai, Chinnathambi Shanmugavel,, Hideo Iwai, Daisuke Fujita, Nobutaka Hanagata, Hongzheng Chen, and Mingsheng Xu*, Sunthesis and fast transfer of momolayer MoS2 on reusable fused silica, Nanoscale, 2017, 9, 6984-6990.
[35] Tao Liang, Shuang Xie, Zhuoting Huang, Weifei Fu, Yu Cai, Xi Yang, Hongzheng Chen, Xiangyang Ma, Hideo Iwai, Daisuke Fujita, Nobutaka Hangata, and Mingsheng Xu*, Elucdation of zero-dimentional to two-dimensional growth transition in MoS2 chemical vapor deposition synthesis, Advanced Materials Interfaces, 2017, 22, 1600687.