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Anti-corrosion strategy to improve the stability of perovskite solar cells

机译:提高钙钛矿太阳能电池稳定性的防腐策略

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In recent years, perovskite solar cells (PSCs) have been considered as one of the most promising photovoltaic technologies due to their solution processing, cost effectiveness, and excellent performance. The highest certified power conversion efficiency (PCE) achieved to date is 25.8, which is approaching the best PCE of 26.81 achieved for silicon-based cells. However, perovskite materials are susceptible to various aging stressors, such as humidity, oxygen, temperature, and electrical bias, which hinder the industrialization of perovskite photovoltaic technologies. In this review, we discuss the lifetime of PSCs from the perspective of corrosion science. On one hand, benefiting from a series of anti-corrosion strategies (passivation, surface coating, machining etc.) used in corrosion science, the stability of perovskite devices is remarkably enhanced; on the other hand, given that perovskites are soft crystal lattices, which are different from traditional metals, the revealed degradation processes and specific methods to improve device operation stability can be applied to the field of corrosion, which can enrich and expand corrosion science.
机译:近年来,钙钛矿太阳能电池已经被被认为是最有前途的一个吗光电技术由于其解决方案处理、成本效益和优秀表演转换效率(PCE)实现的日期25.8%,接近最好的PCE26.81%的实现硅基细胞。钙钛矿材料易受各种老龄化压力,如湿度、氧气,温度和电偏压,阻碍钙钛矿光伏的工业化技术。的一生已经从的角度腐蚀科学。系列防腐策略(钝化,表面涂层、加工等)中使用腐蚀科学、钙钛矿的稳定设备是显著增强;一方面,鉴于钙钛矿软水晶格,这是与传统的不同金属、退化过程和披露特定的方法来提高装置操作可以应用于领域的稳定腐蚀,从而丰富和扩大腐蚀科学。

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