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Pure crystal orientation and anisotropic charge transport in large-area hybrid perovskite films

机译:大面积杂化钙钛矿薄膜中的纯晶体取向和各向异性电荷传输

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摘要

Controlling crystal orientations and macroscopic morphology is vital to develop the electronic properties of hybrid perovskites. Here we show that a large-area, orientationally pure crystalline (OPC) methylammonium lead iodide (MAPbI3) hybrid perovskite film can be fabricated using a thermal-gradient-assisted directional crystallization method that relies on the sharp liquid-to-solid transition of MAPbI3 from ionic liquid solution. We find that the OPC films spontaneously form periodic microarrays that are distinguishable from general polycrystalline perovskite materials in terms of their crystal orientation, film morphology and electronic properties. X-ray diffraction patterns reveal that the film is strongly oriented in the (112) and (200) planes parallel to the substrate. This film is structurally confined by directional crystal growth, inducing intense anisotropy in charge transport. In addition, the low trap-state density (7.9 × 1013 cm−3) leads to strong amplified stimulated emission. This ability to control crystal orientation and morphology could be widely adopted in optoelectronic devices.
机译:控制晶体的取向和宏观形态对于发展杂化钙钛矿的电子性能至关重要。在这里,我们表明,可以使用依赖于MAPbI3急剧的液-固转变的热梯度辅助定向结晶方法来制备大面积的定向纯结晶(OPC)甲基铵碘化铅(MAPbI3)杂化钙钛矿薄膜。从离子液体溶液。我们发现,OPC膜自发地形成周期性微阵列,就其晶体取向,膜形态和电子特性而言,它们与普通的多晶钙钛矿材料是有区别的。 X射线衍射图表明,该膜在平行于基材的(112)和(200)平面中强烈取向。该膜在结构上受到定向晶体生长的限制,从而在电荷传输中引起强烈的各向异性。此外,低的陷阱态密度(7.9×10 13 cm -3 )会导致强烈的受激发射。这种控制晶体取向和形态的能力可以在光电器件中广泛采用。

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