Enhancing the Humidity Stability of Perovskite Films through Interfacial Modification with Differentiated Hydrophilic Organics

材料科学 钙钛矿(结构) 吸附 化学工程 相对湿度 能量转换效率 湿度 图层(电子) 表面改性 山梨醇 吸水率 纳米技术 复合材料 化学 有机化学 光电子学 工程类 物理 热力学
作者
Rui Wang,Xudong Yang,Qiaoyun Chen,Rui Su,Wenting Wu,Ji Cao,Wei Yu,Yi Zhou,Bo Song,Yongfang Li
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:16 (35): 45799-45808 被引量:2
标识
DOI:10.1021/acsami.4c08204
摘要

Preparing high-quality perovskite films is a decisive step toward realizing highly efficient and stable perovskite solar cells (Pero-SCs). Water is a key factor affecting the stability of the Pero-SCs. Here, the widely used water adsorbents chitosan, sorbitol, and sodium hyaluronate (NaHA) were used as hydrophilic layers on the upper interface of the perovskite to form a barrier against water. The water adsorbents also passivated defects on the surface of the perovskite active layer due to their -OH and -COOH functional groups. The NaHA-modified devices showed the best power conversion efficiency (PCE) (PCE = 21.74%). Although the NaHA-modified Pero-SCs showed optimal photovoltaic performance, the stability of the modified devices decreased due to the strong water adsorption ability of NaHA, while with moderate water adsorption ability sorbitol-modified devices exhibited good stability and PCE. The devices were tested in the dark and room temperature at different humidity levels for 800 h. At low humidity (25% ± 5% RH), the PCEs of the sorbitol- and NaHA-modified devices were maintained at 80% and 71% of the initial values, respectively. At high humidity (75% ± 5% RH), the PCE was maintained at 64% and 23% of the initial values, respectively. This work provides an avenue to select adsorbents with suitable water absorption ability as the interface modification layer, thus reducing the water erosion of perovskite films and obtaining highly stable inverted Pero-SCs.
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