钙钛矿(结构)
材料科学
能量转换效率
共轭体系
制作
图层(电子)
聚合物
光电子学
光伏系统
锡
卤化物
纳米技术
光活性层
相(物质)
化学工程
混合太阳能电池
载流子
电子传输链
光伏
聚合物太阳能电池
科技与社会
活动层
萃取(化学)
二氧化锡
有机太阳能电池
作者
Du Hyeon Ryu,Bong-Joo Kang,Nasir Khan,Seungjin Lee,Jun Hyung Kim,Hyun‐Sung Yun,Nam Joong Jeon,Sang Hyuk Im,Chang Eun Song
摘要
ABSTRACT Efficient and stable tin halide perovskite solar cells (THPSCs) require improved interfacial engineering at the electron transport layer (ETL); however, poor interfacial contact and trap‐induced recombination remain key limitations. Here, we present a morphologically uniform ETL formed by blending PC 61 BM with 5 wt% of the conjugated polymer P3HT. This structure suppresses interfacial trap states and facilitates effective carrier extraction through improved contact and vertical phase continuity. The optimized devices achieve a power conversion efficiency (PCE) of 16.06%, with an independently certified efficiency of 15.3%. Structural and spectroscopic analyses reveal a trap‐suppressed and chemically stabilized interface. The devices also exhibit long‐term operational stability, retaining 94% of their initial PCE after 900 h of ambient storage under encapsulation. Furthermore, the successful fabrication of a 12 cm 2 mini‐module achieving a PCE of 10.44% validates the scalability of this approach. These findings underscore the potential of conjugated polymer‐modified ETLs to address intrinsic limitations of tin‐based perovskites and advance the development of efficient, stable, scalable, and lead‐free photovoltaic technologies.
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