Conn Center for Renewable Energy Research, University of Louisville, Louisville, KY 40292, USA. School of Physics, Madurai Kamaraj University, Madurai 625021, Tamil Nadu, India.
Nanotechnology. 2016 Jun 10;27(23):235404. doi: 10.1088/0957-4484/27/23/235404. Epub 2016 Apr 29.
Degradation of metal-organic halide perovskites when exposed to ambient conditions is a crucial issue that needs to be addressed for commercial viability of perovskite solar cells (PSCs). Here, a concept of encapsulating CH3NH3PbI3 perovskite crystals with a multi-functional graphene-polyaniline (PANI) composite coating to protect the perovskite against degradation from moisture, oxygen and UV light is presented. Hole-conducting polymers containing 2D layered sheet materials are presented here as multi-functional materials with oxygen and moisture impermeability. Specific studies involving PANI and graphene composites as coatings for perovskite crystals exhibited resistance to moisture and oxygen under continued exposure to UV and visible light. Most importantly, no perovskite degradation was observed even after 96 h of exposure of the PSCs to extremely high humidity (99% relative humidity). Our observations and results on perovskite protection with graphene/conducting polymer composites open up opportunities for glove-box-free and atmospheric processing of PSCs.
在环境条件下,金属有机卤化物钙钛矿的降解是钙钛矿太阳能电池(PSC)实现商业化的一个关键问题。在这里,提出了一种用多功能石墨烯-聚苯胺(PANI)复合涂层封装 CH3NH3PbI3 钙钛矿晶体的概念,以保护钙钛矿不受水分、氧气和紫外线的降解。本文提出了含有二维层状片状材料的空穴传输聚合物作为多功能材料,具有不透氧和不透水的特性。具体研究表明,PANI 和石墨烯复合材料作为钙钛矿晶体的涂层,在持续暴露于紫外光和可见光下,能够抵抗水分和氧气。最重要的是,即使在 PSCs 暴露于极高湿度(99%相对湿度) 96 小时后,也没有观察到钙钛矿降解。我们关于用石墨烯/导电聚合物复合材料保护钙钛矿的观察和结果为无手套箱和大气处理 PSCs 开辟了机会。