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Multiscale morphology design of hybrid halide perovskites through a polymeric template

机译:多尺度形态学设计混合卤通过聚合物钙钛矿模板

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摘要

Hybrid halide perovskites have emerged as promising active constituents of next generation solution processable optoelectronic devices. During their assembling process, perovskite components undergo very complex dynamic equilibria starting in solution and progressing throughout film formation. Finding a methodology to control and affect these equilibria, responsible for the unique morphological diversity observed in perovskite films, constitutes a fundamental step towards a reproducible material processability. Here we propose the exploitation of polymer matrices as cooperative assembling components of novel perovskite CH3NH3PbI3 : polymer composites, in which the control of the chemical interactions in solution allows a predictable tuning of the final film morphology. We reveal that the nature of the interactions between perovskite precursors and polymer functional groups, probed by Nuclear Magnetic Resonance (NMR) spectroscopy and Dynamic Light Scattering (DLS) techniques, allows the control of aggregates in solution whose characteristics are strictly maintained in the solid film, and permits the formation of nano-structures that are inaccessible to conventional perovskite depositions. These results demonstrate how the fundamental chemistry of perovskite precursors in solution has a paramount influence on controlling and monitoring the final morphology of CH3NH3PbI3 (MAPbI(3)) thin films, foreseeing the possibility of designing perovskite : polymer composites targeting diverse optoelectronic applications.
机译:混合金属卤化物钙钛矿已成为有前途的下一代的有效成分解决方案可加工的光电设备。在装配过程中,钙钛矿组件进行非常复杂的动态平衡从解决方案和进展在膜的形成。这些平衡控制和影响,负责独特的形态多样性在钙钛矿的电影,构成一个基本的一步可再生的材料加工性能。提出了利用聚合物矩阵合作组装组件的小说钙钛矿CH3NH3PbI3:聚合物复合材料化学相互作用的控制解决方案允许一个可预测的调优的最后电影形态。钙钛矿前体和之间的相互作用聚合物的官能团,通过核探测核磁共振(NMR)光谱和动态的光散射(DLS)技术,允许总量控制的解决方案特点是严格维护坚实的电影,和允许的形成纳米结构是无法访问的传统的钙钛矿口供。结果证明的基本化学钙钛矿前兆的解决方案控制和监测至关重要的影响的最终形态CH3NH3PbI3 (MAPbI (3))薄膜,预见的可能性设计钙钛矿:聚合物复合材料针对不同的光电应用程序。

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