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用于光稳定钙钛矿太阳能电池的新型硫化镉空穴阻挡层

Novel CdS Hole-Blocking Layer for Photostable Perovskite Solar Cells.

作者信息

Hwang Insung, Yong Kijung

机构信息

Surface Chemistry Laboratory of Electronic Materials, Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH) , Pohang 790-784, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2016 Feb 17;8(6):4226-32. doi: 10.1021/acsami.5b12336. Epub 2016 Feb 4.

Abstract

Currently, the stability issue of the perovskite solar cells (PSCs) is one of the most critical obstacles in the commercialization of PSCs. Although incredible advances in the photovoltaic efficiencies of PSCs have been achieved in the past few years, research on the stability of PSCs has been relatively less explored. In this study, a new kind of CdS hole-blocking layer replacing the traditional compact TiO2 layer is developed to improve the photostability of PSCs because the intrinsic oxygen vacancies of the TiO2 surface are suspected to be the main cause for the photoinduced degradation of PSCs. As a result, PSCs with the CdS layer exhibit considerably improved photostability, maintaining over 90% of the initial efficiency after continuous sunlight illumination for 12 h, while the TiO2 PSC retains only 18% of the initial efficiency under the same conditions. Charge-transfer characteristics related to photodegradation are investigated by various analyses including electrochemical impedance spectroscopy and open-circuit voltage decay and time-resolved photoluminescence decay measurements. the CdS PSC exhibits negligible degradation in the charge-carrier dynamics, while the TiO2 PSC suffers from severely damaged characteristics like increased charge recombination rate, charge-transfer resistance, and reduced charge extraction rate.

摘要

目前,钙钛矿太阳能电池(PSCs)的稳定性问题是其商业化过程中最关键的障碍之一。尽管在过去几年里,PSCs的光电转换效率取得了惊人的进展,但对PSCs稳定性的研究相对较少。在本研究中,开发了一种新型的CdS空穴阻挡层来取代传统的致密TiO₂层,以提高PSCs的光稳定性,因为TiO₂表面的固有氧空位被认为是PSCs光致降解的主要原因。结果,具有CdS层的PSCs表现出显著提高的光稳定性,在连续光照12小时后仍保持初始效率的90%以上,而TiO₂基PSCs在相同条件下仅保留初始效率的18%。通过各种分析方法,包括电化学阻抗谱、开路电压衰减和时间分辨光致发光衰减测量,研究了与光降解相关的电荷转移特性。CdS基PSCs在电荷载流子动力学方面表现出可忽略不计的降解,而TiO₂基PSCs则存在严重受损的特性,如电荷复合率增加、电荷转移电阻增大和电荷提取率降低。

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