串联
单层
材料科学
纳米技术
接口(物质)
钥匙(锁)
组分(热力学)
图层(电子)
光伏系统
转化式学习
极限(数学)
自组装单层膜
光电子学
表征(材料科学)
作者
Qi Xiao,Ying Zhou,Haisheng Song,Renqiang Yang,Jiang Tang,Zhong’an Li
标识
DOI:10.1002/adfm.202600042
摘要
ABSTRACT Perovskite tandem solar cells (TSCs) are pivotal for breaking the single‐junction Shockley–Queisser limit and enabling low‐cost, high‐efficiency photovoltaics. Self‐assembled monolayers (SAMs) have become indispensable in this pursuit, due to their attractive capability of forming lossless contact at the interface that can effectively suppress non‐radiative recombination. Their role has evolved rapidly from a hole transport layer in wide‐bandgap subcells to a multifunctional component across narrow‐bandgap perovskite, organic, and interconnecting layers, proving critical for record‐efficiency devices. This review provides a systematical assessment of the synthesis and properties of SAMs, as well as their transformative impact on all‐perovskite, perovskite‐organic, perovskite‐Si, and perovskite‐CIGS TSCs. We conclude by identifying the key challenges and outlining a strategic roadmap for the future development of SAMs in tandem photovoltaics.
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