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Columnar liquid crystals as stability enhancing hole transport layers for Ruddlesden–Popper perovskite optoelectronics

机译:柱状液晶稳定性增强Ruddlesden-Popper空穴传输层钙钛矿光电子学

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Metal halide perovskites are highly promising materials for next generation optoelectronic devices, but they suffer from moisture-driven and thermal degradation. We focus on the prototypical light-absorbing methylammonium lead(ii) iodide (MAPbI3) crystal that degrades predominantly into lead iodide (PbI2). In this work, we perform a systematic comparison of the structural and optical properties between perovskites coated with spiro-OMeTAD and a discotic liquid crystal (DLC) 2,3,6,7,10,11-hexakis(pentyloxy)triphenylene (HAT5). Butylammonium iodide (BAI) is used as an additive to make hybrid mixed dimensional (MD) and two-dimensional perovskites. We perform aging studies in a lab environment over a period of 45 days and two sets of conditions are tested; the first set is exposed to humidity that varies between 58 and 36%, and the second set was exposed to the environment and additionally was heated at 65 °C in the atmosphere for four hours every day. Our results demonstrate that the DLC HAT5 molecule results in improved long-term stability of hybrid MD BAI substituted Ruddlesden–Popper perovskites. Some concerns about low phase transition temperatures in working devices are also highlighted. The enhanced stability of perovskite-based optoelectronic devices with the use of HATn HTLs provides a promising molecular engineering approach that can be applied in stable next-generation perovskite optoelectronic devices.
机译:金属卤化物钙钛矿是高度承诺为下一代光电子材料设备,但是他们遭受moisture-driven和热降解。吸光methylammonium碘化铅(ii)(MAPbI3)晶体,主要降解碘化铅(PbI2)。系统结构和比较钙钛矿之间的光学特性涂层spiro-OMeTAD和discotic液晶(DLC)2,3,6,7,10,11-hexakis triphenylene (pentyloxy)(HAT5)。添加剂,使混合混合维(MD)和二维钙钛矿。研究在实验室环境中经过一段45天,两组条件测试;第一组暴露在湿度而变化58至36%,第二组暴露于环境,此外加热在65°C在大气中四个小时每一天。HAT5分子导致长期的改善稳定的混合MD白代替Ruddlesden-Popper钙钛矿。关于低相变温度工作装置也会高亮显示。增强perovskite-based稳定性光电设备使用HATn HTLs提供了一个有前途的分子工程方法,可应用于稳定新一代钙钛矿光电设备。

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