VIRTUAL ISSUE
Organic Photovoltaics
REVIEWS
Towards a bright future: polymer solar cells with power conversion efficiencies over 10%
Zhicheng Hu, Lei Ying, Fei Huang & Yong Cao
Sci China Chem, 2017, 60(5): 571–582
Conjugated polymers containing B←N unit as electron acceptors for all-polymer solar cells
Chuandong Dou, Jun Liu & Lixiang Wang
Sci China Chem, 2017, 60(4): 450–459
Recent progress of interconnecting layer for tandem organic solar cells
Shunmian Lu, Dan Ouyang & Wallace C.H. Choy
Sci China Chem, 2017, 60(4):460–471
Noncovalent conformational locks in organic semiconductors
Simiao Yu, Aidong Peng, Shiming Zhang & Hui Huang
Sci China Chem, 2018, DOI: 10.1007/s11426-018-9315-2
ARTICLES
A chlorinated low-band gap small-molecule acceptor for organic solar cells with 14.1% efficiency and low energy loss
Bin Kan, Huanran Feng, Huifeng Yao, Meijia Chang, Xiangjian Wan, Chenxi Li, Jianhui Hou & Yongsheng Chen
Sci China Chem, 2018, 61(10), 1307-1313
Synergistic effect of fluorination on both donor and acceptor materials for high performance non-fullerene polymer solar cells with 13.5% efficiency
Qunping Fan, Wenyan Su, Yan Wang, Bing Guo, Yufeng Jiang, Xia Guo, Feng Liu, Thomas P. Russell, Maojie Zhang & Yongfang Li
Sci China Chem, 2018, 61(5):531–537
High-efficiency quaternary polymer solar cells enabled with binary fullerene additives to reduce nonfullerene acceptor optical band gap and improve carriers transport
Weiping Li, Dong Yan, Feng Liu, Thomas Russell, Chuanlang Zhan & Jiannian Yao
Sci China Chem, 2018, 61: DOI: 10.1007/s11426-018-9320-3
Enhance the performance of polymer solar cells via extension of the flanking end groups of fused ring acceptors
Shiyu Feng, Danyang Ma, Liangliang Wu, Yahui Liu, Cai’e Zhang, Xinjun Xu, Xuebo Chen, Shouke Yan & Zhishan Bo
Sci China Chem, 2018, 61(10): 1320-1327
Fluorination vs. chlorination: a case study on high performance organic photovoltaic materials
Yun Zhang, Huifeng Yao, Shaoqing Zhang, Yunpeng Qin, Jianqi Zhang, Liyan Yang, Wanning Li, Zhixiang Wei, Feng Gao & Jianhui Hou
Sci China Chem, 2018, 61(10): 1328-1337
Manipulating active layer morphology of molecular donor/polymer acceptor based organic solar cells through ternary blends
Zijian Zhang, Zicheng Ding, David J. Jones, Wallace W. H. Wong, Bin Kan, Zhaozhao Bi, Xiangjian Wan, Wei Ma, Yongsheng Chen, Xiaojing Long, Chuandong Dou, Jun Liu & Lixiang Wang
Sci China Chem, 2018, 61(8): 1025–1033
A combined experimental and the oretical investigation of donor and acceptor interface in efficient aqueous-processed polymer/nanocrystal hybrid solar cells
Siyu Lu, Wei Ma, Gan Jin, Qingsen Zeng, Xiaolei Feng, Tanglue Feng, Hanyu Liu, Sheng Meng, Simon A. T. Redfern & Bai Yang
Sci China Chem, 2018, 61(4): 437–443
Side-chain modification of polyethylene glycol onconjugated polymers for ternary blend all-polymer solar cells with efficiency up to 9.27%
Zhenye Li, Baobing Fan, Baitian He, Lei Ying, Wenkai Zhong, Feng Liu, Fei Huang & Yong Cao
Sci China Chem, 2018, 61(4): 427–436
Highly stable Al-doped ZnO by ligand-free synthesis as general thickness-insensitive interlayers for organic solar cells
Yilin Wang, Zhongyou Peng, Shuqin Xiao, Jia Yang, Huanyu Zhou, Liqiang Huang, Lulu Sun, Yinhua Zhou, Licheng Tan & Yiwang Chen
Sci China Chem, 2018, 61(1): 127–134
Short-axis substitution approach on ladder-type benzodithiophene-based electron acceptor toward highly efficient organic solar cells
Jiu-Dong Lin, Lian Zhong, Fu-Peng Wu,Yongxi Li, Yi Yuan, Haijun Bin, Zhanjun Zhang, Feng Liu, Jian Fan, Zhi-Guo Zhang, Liang-Sheng Liao, Zuo-Quan Jiang & Yongfang Li
Sci China Chem, 2018, 61: DOI: 10.1007/s11426-018-9275-6
A new strategy for designing polymer electron acceptors: electron-rich conjugated backbone with electron-deficient side units
Fan Yang, Xiaohui Wang,Guitao Feng, Junshu Ma, Cheng Li, Junyu Li, Wei Ma, Weiwei Li
Sci China Chem, 2018, 61(7): 824-829
点击“阅读原文”可免费查阅、下载全文!
推 荐 阅 读
陈永胜教授课题组:基于氯代小分子受体材料的有机太阳能电池效率超过14%
苏州大学张茂杰教授(李永舫院士团队)制备了光电转换效率高达13.5%的聚合物太阳能电池
北京师范大学薄志山团队通过修饰稠环电子受体的端基提高其光伏性能
姚建年院士、詹传郎研究员团队通过设计四组份活性层制备了效率超过12%的聚合物太阳电池
Go to "Discover" > "Top Stories" > "Wow"