李耀文副教授在 Adv. Funct. Mater. 上发表研究论文

作者: 发布时间:2018-04-03 浏览次数:895

Self-Doping Fullerene Electrolyte-Based Electron Transport Layer for All-Room-Temperature-Processed High- Performance Flexible Polymer Solar Cells

Jingwen Zhang a, Rongming Xue a, Guiying Xu a, Weijie Chen a, Guo-Qing Bianb, Changan Wei, Yaowen Li* a(李耀文), and Yongfang Li ac

  

a Laboratory of Advanced Optoelectronic Materials,College of Chemistry Chemical Engineering and Materials Science ,Soochow University,Suzhou 215123, China

b College of Chemistry Chemical Engineering and Materials Science,Soochow University,Suzhou 215123, China

c Beijing National Laboratory for Molecular Sciences Institute of Chemistry Chinese Academy of Sciences,Beijing 100190, China

  

Adv. Funct. Mater. 2018, 28, 1705847

  

To achieve highperformance largearea flexible polymer solar cells (PSCs), one of the challenges is to develop new interface materials that possess a thermalannealingfree process and thicknessinsensitive photovoltaic properties. Here, an ntype selfdoping fullerene electrolyte, named PCBB3N3I, is developed as electron transporting layer (ETL) for the application in PSCs. PCBB3N3I ETL can be processed at room temperature, and shows excellent orthogonal solvent processability, substantially improved conductivity, and appropriate energy levels. PCBB3N3I ETL also functions as lightharvesting acceptor in a bilayer solar cell, contributing to the overall device performance. As a result, the PCBB3N3I ETLbased inverted PSCs with a PTB7Th:PC71BM photoactive layer demonstrate an enhanced power conversion efficiency (PCE) of 10.62% for rigid and 10.04% for flexible devices. Moreover, the device avoids a thermal annealing process and the photovoltaic properties are insensitive to the thickness of PCBB3N3I ETL, yielding a PCE of 9.32% for the device with thick PCBB3N3I ETL (61 nm). To the best of one's knowledge, the above performance yields the highest efficiencies for the flexible PSCs and thick ETLbased PSCs reported so far. Importantly, the flexible PSCs with PCBB3N3I ETL also show robust bending durability that could pave the way for the future development of highperformance flexible solar cells.

  

  

链接:https://onlinelibrary.wiley.com/doi/abs/10.1002/adfm.201705847