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首页> 外文期刊>Materials Chemistry Frontiers >Improving the moisture stability of perovskite solar cells by using PMMA/P3HT based hole-transport layers
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Improving the moisture stability of perovskite solar cells by using PMMA/P3HT based hole-transport layers

机译:提高钙钛矿的水分稳定太阳能电池用PMMA / P3HT的基础空穴传输层

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In recent years, the performance of lead halide perovskite solar cells has increased dramatically, setting a record efficiency of 22.1%; however, their sensitivity towards water limits their utility and still needs to be addressed. While many different materials and methods are being developed to solve this problem, recent studies have suggested that modifications to the hole-transport layer can be effectively used to improve device stability. In this study, we report a new device architecture that makes use of a poly(3- hexylthiophene) (P3HT) nanowire network in a poly(methyl methacrylate) (PMMA) matrix as the hole-transport layer. The PMMA matrix imparts excellent resistance toward the ingress of both liquid and vapor-phase water, and leads to a large increase in the stability of the device. Using a combination of in situ absorbance spectroscopy, powder X-ray diffraction and device measurements, we have quantified the increase in device stability; optimized PMMA/P3HT layers can improve device lifetimes by an order of magnitude.
机译:近年来,铅卤化物的性能钙钛矿太阳能电池增加了,设定一个记录的效率22.1%;限制了他们的效用和仍然需要解决。方法被开发来解决这个问题问题,最近的研究表明可以修改空穴传输层有效地用于提高设备稳定性。这项研究中,我们报告一个新设备的架构利用聚(3 - hexylthiophene)(P3HT)纳米线网络聚(甲基丙烯酸甲酯)(PMMA)作为空穴传输矩阵层。向入口的液体和阻力气相水,导致大量增加稳定的设备。结合原位吸光度光谱,粉末x射线衍射和设备测量,我们有量化的增加设备稳定;设备寿命的一个数量级。

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