Affiliation:
1. Chongqing Institute of Green and Intelligent Technology Chinese Academy of Sciences Chongqing 400714 China
2. Chongqing School University of Chinese Academy of Sciences Chongqing 400714 China
3. University of Chinese Academy of Sciences Beijing 100049 China
Abstract
AbstractEfficient cathode interfacial layers (CILs) have become a crucial component of organic solar cells (OSCs). Charge extraction barriers, interfacial trap states, and significant transport resistance may be induced due to the unfavorable cathode interlayer, limiting the device performance. In this study, poly(4‐vinylpyridine) is used as the CIL for OSCs, and a new type of CIL named P4VP‐I is synthesized through the quaternization strategy. Compared to P4VP, P4VP‐I CIL exhibits enhanced conductivity and optimized work function. OSCs employing the P4VP‐I ETL demonstrate prolonged carrier lifetime, suppressed charge recombination, and achieve higher power conversion efficiencies (PCE) than the commonly used ETLs such as PFN‐Br and Phen‐NaDPO.
Funder
National Natural Science Foundation of China