论文标题
识别和减少界面损失,以增强发射钙钛矿纳米纳米片的颜色纯电致发光二极管。
Identifying and reducing interfacial losses to enhance color-pure electroluminescence in blue-emitting perovskite nanoplatelet light-emitting diodes
论文作者
论文摘要
钙钛矿纳米片(NPLS)在发光应用方面具有巨大的前景,在蓝色波长范围内达到了统一的高光致发光量子效率(PLQE),在该范围内其他金属 - 甲基甲酯钙钛矿通常无效。但是,蓝色发光发光二极管(LED)的外部量子效率(EQE)仅达到0.12%,典型值远低于0.1%。在这项工作中,我们表明,NPL LED的性能主要受到发射极和注射孔之间的电子界面不佳的阻碍。通过开尔文探针和X射线光发射光谱测量值,我们揭示了NPL具有非常深的电离电势(> = 6.5 eV),从而导致孔注射较大的屏障,以及在界面和孔注射器之间的实质性非辐射衰减。我们发现,减少这些非辐射损失的有效方法是使用聚(三层)中间层。这导致我们的蓝色LED的均衡器以464 nm波长为0.3%。我们发现我们的结果可以推广到较厚的天蓝色发射NPL,在那里我们使用聚(三生叶)层中层将EQE提高到0.55%。我们的工作还确定了进一步效率提高的关键挑战。
Perovskite nanoplatelets (NPls) hold great promise for light-emitting applications, having achieved high photoluminescence quantum efficiencies (PLQEs) approaching unity in the blue wavelength range, where other metal-halide perovskites have typically been ineffective. However, the external quantum efficiency (EQE) of blue-emitting NPl light-emitting diodes (LEDs) have only reached 0.12%, with typical values well below 0.1%. In this work, we show that the performance of NPl LEDs is primarily hindered by a poor electronic interface between the emitter and hole-injector. Through Kelvin Probe and X-ray photoemission spectroscopy measurements, we reveal that the NPls have remarkably deep ionization potentials (>=6.5 eV), leading to large barriers for hole injection, as well as substantial non-radiative decay at the interface between the emitter and hole-injector. We find that an effective way to reduce these non-radiative losses is by using poly(triarylamine) interlayers. This results in an increase in the EQE of our blue LEDs emitting at 464 nm wavelength to 0.3%. We find that our results can be generalized to thicker sky-blue-emitting NPls, where we increase the EQE to 0.55% using the poly(triarylamine) interlayer. Our work also identifies the key challenges for further efficiency increases.