Self‐Assembled Monolayer Hole‐Selective Contact for Up‐Scalable and Cost‐Effective Inverted Perovskite Solar Cells

Author:

Wu Tianhao1ORCID,Mariotti Silvia1ORCID,Ji Penghui1ORCID,Ono Luis K.1ORCID,Guo Ting1ORCID,Rabehi Ilhem‐Nadia1ORCID,Yuan Shuai1ORCID,Zhang Jiahao1ORCID,Ding Chenfeng1ORCID,Guo Zhanglin2ORCID,Qi Yabing1ORCID

Affiliation:

1. Energy Materials and Surface Sciences Unit (EMSSU) Okinawa Institute of Science and Technology Graduate University (OIST) 1919‐1 Tancha, Onna‐son Kunigami‐gun 904‐0495 Japan

2. Center for Energy Systems Design (CESD) International Institute for Carbon‐Neutral Energy Research (WPI‐I2CNER) Kyushu University 744 Motooka, Nishi‐ku Fukuoka 819‐0395 Japan

Abstract

AbstractInverted positive‐intrinsic‐negative (p‐i‐n) perovskite solar cells (IPSCs) have attracted widespread attention due to their low fabrication temperature, good stability in ambient air, and the potential for use in flexible and tandem devices. In recent years, self‐assembled monolayers (SAMs) have been investigated as a promising hole‐selective contact for IPSCs, leading to an impressive record efficiency of about 26%, which is comparable to that of the regular n‐i‐p counterparts. This review focuses on the progress of SAM‐based IPSCs from the perspective of energy level matching, defect passivation, interface carrier extraction, and SAMs’ stability improvement, as well as the advances in up‐scalable fabrication of SAMs and perovskite layers for efficient solar modules and tandem devices. A cost analysis of the SAMs and other commonly used hole‐selective materials is conducted to evaluate their cost‐effectiveness for photovoltaic applications. Finally, the future challenges are pointed out and the perspectives on how to up‐scale SAM‐based IPSCs and improve their long‐term operational stability are provided.

Publisher

Wiley

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