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Revealing Factors Influencing the Operational Stability of Perovskite Light-Emitting Diodes

机译:影响影响钙钛矿发光二极管运行稳定性的因素

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摘要

Light-emitting diodes (LEDs) made from metal halide perovskites have demonstrated external electroluminescent quantum efficiencies (EQE(EL)) in excess of 20%. However, their poor operational stability, resulting in lifetimes of only tens to hundreds of hours, needs to be dramatically improved prior to commercial use. There is little consensus in the community upon which factors limit the stability of these devices. Here, we investigate the role played by ammonium cations on the operational stability. We vary the amount of phenylethylammonium bromide, a widely used alkylammonium salt, that we add to a precursor solution of CsPbBr3 and track changes in stability and EQE(EL). We find that while phenylethylammonium bromide is beneficial in achieving high efficiency, it is highly detrimental to operational stability. We investigate material properties and electronic characteristics before and after degradation and find that both a reduction in the radiative efficiency of the emitter and significant changes in current-voltage characteristics explain the orders of magnitude drop in the EQE(EL), which we attribute to increased ionic mobility. Our results suggest that engineering new contacts and further investigation into materials with lower ionic mobility should yield much improved stability of perovskite LEDs.
机译:由金属卤化物Perovskites制成的发光二极管(LED)已经表现出外部电致发光量子效率(EQE(EL))超过20%。然而,它们在商业用途之前,他们的操作稳定性较差,导致仅限数十个小时的寿命需要大大改善。社区中有很少的共识,因素限制了这些设备的稳定性。在这里,我们调查铵阳离子对操作稳定性发挥的作用。我们改变苯乙基溴化铵,广泛使用的烷基铵盐的量,即我们加入CSPBBR3的前体溶液和稳定性和EQE(EL)的轨道变化。我们发现,虽然苯基乙基溴化物在实现高效率方面有益,但它对操作稳定性是非常有害的。我们在退化之前和之后调查材料特性和电子特性,并发现发射器的辐射效率的降低和电流电压特性的显着变化解释了EQE(EL)中的数量级下降,我们将其归因于增加离子流动性。我们的研究结果表明,工程新的接触和进一步调查具有较低离子迁移率的材料应产生大大提高了钙钛矿LED的稳定性。

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