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Manipulating the assembly of perovskites onto soft nanoimprinted titanium dioxide templates

机译:操纵Perovskites的组装到软纳米修印钛二氧化钛模板上

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摘要

Soft nanoimprinted titanium dioxide (TiO2) substrates decorated with methylammonium lead halide perovskite (MAPbI(3)) crystals were fabricated by controlling the perovskite precursor concentration and volume during spin coat processing combined with the use of hydrophobic TiO2 templates. The patterned growth was demonstrated with different perovskite crystallization methods. We investigated and successfully demonstrated the controlled assembly of two MAPbI(3) nanomaterials, one a nanocomposite formed between the perovskite and a hole conducting polymer poly(2,5-bis(N-methyl-N-hexylamino)phenylene vinylene) (BAMPPV), and a second formed from perovskite crystals using common solution based MAPbI(3) growth methods (1-step and 2-step processing). Both types of MAPbI(3) crystals were fabricated on hydrophobic TiO2 nanotemplates composed of nanowells or grating patterns. Patterned areas as large as 100 mu m x 100 mu m were achieved. We examined and characterized the substrates using atomic force microscopy, scanning electron microscopy, x-ray diffraction, and energy dispersive spectroscopy. We present the optical properties (i.e. fluorescence and transmission) of soft nanoimprinted nanowells decorated with perovskites demonstrating the successful synthesis of MAPbI(3) perovskite nanocrystals. As an example of their use, we demonstrate a two terminal device and show photocurrent response of a perovskite patterned micro-grating. Our method is a nondestructive approach to nanopatterning perovskites, and produces patterned arrays that maintain their photo-electric properties. The results presented herein suggests an attractive route to developing nanopatterned and small area perovskite substrates for applications in photovoltaics, x-ray sensing/detection, image sensor arrays, and others.
机译:通过控制旋转涂层处理期间的钙钛矿前体浓度和使用疏水性TiO2模板,通过控制钙钛矿前体浓度和体积来制造柔软的纳米修印钛(TiO2)晶体(MAPBI(3))晶体。用不同的钙钛矿结晶方法证明了图案化的生长。我们调查并成功地证明了两种MAPBI(3)纳米材料的控制组件,在钙钛矿和孔传导聚合物聚合物聚合物(2,5-双(N-甲基-N-己基氨基)亚苯基乙烯基)(BAMPPV)之间形成一个纳米复合材料并且使用基于普通溶液的MAPBI(3)生长方法(1步和2步),从钙钛矿晶体形成的第二个。在由纳米蜂窝或光栅图案组成的疏水TiO2纳米管内制造两种类型的MAPBI(3)晶体。达到100μm×100μm的图案区域。我们使用原子力显微镜,扫描电子显微镜,X射线衍射和能量分散光谱进行了研究和表征基材。我们介绍了用Perovskites装饰的软纳米修印纳米线的光学性质(即荧光和透射),证明了Mapbi(3)钙钛矿纳米晶体的成功合成。作为其使用的示例,我们展示了两个终端设备,并显示了钙钛矿图案化微光栅的光电流响应。我们的方法是一种非破坏性的纳米透明术的方法,并产生图案化的阵列,其保持其光电性质。本文提出的结果表明,用于在光伏,X射线感测/检测,图像传感器阵列和其他中开发纳米砖化和小面积钙钛矿基板的有吸引力的途径。

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