Self-Assembled Multilayers Reduce Interfacial Energy Loss in Perovskite Solar Cells
Abstract
Abstract The use of self-assembled multilayer (SAM) layers as hole transport layers (HTLs) represents a major advance for high-efficiency perovskite solar cells (PSCs). However, many SAMs materials suffer from aggregation, poor wettability, and weak interactions with the perovskite, which hinder charge transfer and cause energy losses that limit both power conversion efficiency (PCE) and long-term stability. In this study, we synthesized two SAMs, namely 2-(10-(3,5-dimethoxyphenyl)−7H-benzo[c]carbazol-7-yl)ethyl)phosphonic acid (denoted as DMPA) and 2-(7H-benzo[c]carbazol-7-yl)ethyl)phosphonic acid (denoted as BCPA). DMPA SAM effectively suppresses self‑aggregation and enhances substrate coverage. The methoxy groups in DMPA interact with the perovskite, thereby enabling DMPA to passivate defects at the buried interface and optimize perovskite crystallization. These interfacial improvements facilitate more efficient charge extraction and enhance interfacial stability. As a result, DMPA-based PSCs achieve a PCE of 27.59% (certified PCE of 27.2%) and show remarkable photothermal stability, retaining 94.5% of their initial efficiency after 1600 hours of continuous illumination under 1 Sun at 65 °C.
Article Details
Authors (23)
Yi Pan
Department of Chemistry, City University of Hong Kong, Tat Chee Avenue, Kowloon Tong, Hong Kong 999077, China
Lei Liu
Haoxuan Guo
Changqin Lin
Pengfei Wu
Davidson School of Chemical Engineering
Zeping Ou
Can Wang
Peidong Chen
Qin Gao
Mingyang Gao
Xiaoxue Lin
Dingqin Hu
Tingming Jiang
Yujie Zheng
National Innovation Center for Industry-Education Integration of Energy Storage Technology, MOE Key Laboratory of Low-Grade Energy Utilization Technologies and Systems, CQU-NUS Renewable Energy Materials & Devices Joint Laboratory, School of Energy & Power Engineering
Zeyun Xiao
Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences
Ke Yang
Zeyu Zhang
Rui Wang
Nabonswende Aida Nadege Ouedraogo
Zedong Lin
Wei Wei
Kuan Sun
Qiang Liao