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Lead iodide perovskite light-emitting field-effect transistor

机译:碘化铅钙钛矿发光场效应晶体管

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Despite the widespread use of solution-processable hybrid organic-inorganic perovskites in photovoltaic and light-emitting applications, determination of their intrinsic charge transport parameters has been elusive due to the variability of film preparation and history-dependent device performance. Here we show that screening effects associated to ionic transport can be effectively eliminated by lowering the operating temperature of methylammonium lead iodide perovskite (CH3NH3PbI3) field-effect transistors. Field-effect carrier mobility is found to increase by almost two orders of magnitude below 200 K, consistent with phonon scattering-limited transport. Under balanced ambipolar carrier injection, gate-dependent electroluminescence is also observed from the transistor channel, with spectra revealing the tetragonal to orthorhombic phase transition. This demonstration of CH3NH3PbI3 light-emitting field-effect transistors provides intrinsic transport parameters to guide materials and solar cell optimization, and will drive the development of new electro-optic device concepts, such as gated light-emitting diodes and lasers operating at room temperature.
机译:尽管可溶液加工的有机-无机杂化钙钛矿在光伏和发光应用中得到广泛应用,但是由于薄膜制备的可变性和依赖于历史的器件性能,难以确定其固有电荷传输参数。在这里,我们表明,通过降低甲基铵碘化钙钛矿(CH3NH3PbI3)场效应晶体管的工作温度,可以有效消除与离子迁移相关的屏蔽效应。发现在200 K以下,场效应载流子迁移率增加了近两个数量级,这与声子散射限制的传输相一致。在平衡的双极性载流子注入下,还可以从晶体管通道观察到栅极相关的电致发光,其光谱揭示了从四方到正交的相变。 CH3NH3PbI3发光场效应晶体管的这一演示提供了固有的传输参数,可指导材料和太阳能电池的优化,并将推动新的电光器件概念的发展,例如在室温下工作的门控发光二极管和激光器。

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