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A Photoferroelectric Perovskite-Type Organometallic Halide with Exceptional Anisotropy of Bulk Photovoltaic Effects

机译:具有大各向异性光伏效应的光铁电钙钛矿型有机金属卤化物

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摘要

Perovskite-type ferroelectrics composed of organometallic halides are emerging as a promising alternative to conventional photovoltaic devices because of their unique photovoltaic effects (PVEs). A new layered perovskite-type photoferroelectric, bis(cyclohexylaminium) tetrabromo lead (1), is presented. The material exhibits an exceptional anisotropy of bulk PVEs. Upon photoexcitation, superior photovoltaic behaviors are created along its inorganic layers, which are composed of corner-sharing PbBr6 octahedra. Semi-conducting activity with remarkable photoconductivity is achieved in the vertical direction, showing sizeable on/off current ratios (>10(4)), which compete with the most active photovoltaic material CH3NH3PbI3. In 1 the temperature-dependence of photovoltage coincides fairly well with that of polarization, confirming the dominant role of ferroelectricity in such highly anisotropic PVEs. This finding sheds light on bulk PVEs in ferroelectric materials, and promotes their application in optoelectronic devices.
机译:由有机金属卤化物组成的钙钛矿型铁电体正因其独特的光伏效应(PVE)而成为常规光伏器件的有希望的替代品。提出了一种新的层状钙钛矿型光铁电体双(环己基铵)四溴铅(1)。该材料展现出大量PVE的各向异性。光激发后,沿其无机层(由角共享PbBr6八面体组成)产生了优异的光伏行为。在垂直方向上实现了具有显着光电导性的半导体活性,显示出可观的开/关电流比(> 10(4)),可与最具活性的光伏材料CH3NH3PbI3竞争。在图1中,光电压的温度依赖性与极化的温度依赖性很好地吻合,证实了铁电在这种高度各向异性的PVE中的主导作用。这一发现揭示了铁电材料中的大体积PVE,并促进了它们在光电器件中的应用。

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