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Rapid Microwave‐Annealing Process of Hybrid Perovskites to Eliminate Miscellaneous Phase for High Performance Photovoltaics

机译:钙钛矿杂化钙的快速微波退火工艺消除了高性能光伏的杂相

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摘要

Rapid processing technologies of perovskite solar cells (PSCs) offer an exciting approach to raise the rate of production. Herein, a rapid microwave‐annealing process (MAP) is reported to replace the traditional hotplate annealing process (HAP) and the processing period of perovskite is reduced to less than 1 min. Benefiting from the penetrability and simultaneity of microwave irradiation, the MAP method can effectively eliminate miscellaneous phases and thus achieve >1 µm large‐size crystal grains in perovskite films. These MAP treated perovskite films exhibit pure crystalline phase, long charge‐carrier lifetime, and low defect density, which can substantially improve the PSC efficiency without requiring an additional enhancer/passivation layer. The inverted planar PSCs present enhanced power conversion efficiency from 18.33% (HAP) to 21.59% (MAP) and good stability of >1000 h lifetime without encapsulation under ambient conditions. In addition, MAP can be applied to a large‐size (10 cm × 10 cm) perovskite film fabrication as well as a broader tolerance in environmental temperature and precursor concentration, making it a reliable method for repeatably practical fabrication of perovskite photovoltaics.
机译:钙钛矿太阳能电池(PSC)的快速加工技术提供了一种令人兴奋的方法来提高生产率。在此,据报道,快速微波退火工艺(MAP)代替了传统的热板退火工艺(HAP),钙钛矿的加工时间缩短至不到1分钟。得益于微波辐射的穿透性和同时性,MAP方法可以有效消除杂相,从而在钙钛矿薄膜中获得大于1 µm的大晶粒。这些经过MAP处理的钙钛矿薄膜表现出纯的晶相,长的电荷载流子寿命和低的缺陷密度,可在不需额外的增强剂/钝化层的情况下大大提高PSC效率。倒置的平面PSC的功率转换效率从18.33%(HAP)增强到21.59%(MAP),并且在不封装的情况下具有良好的稳定性,寿命> 1000小时,而无需在环境条件下进行封装。此外,MAP可以应用于大尺寸(10 cm x 10 cm)钙钛矿薄膜的制造以及对环境温度和前驱物浓度的更大耐受性,这使其成为可重复实际制造钙钛矿光伏电池的可靠方法。

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