Department of Electrical and Electronic Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong SAR, China.
Nanoscale. 2019 Sep 19;11(36):16907-16918. doi: 10.1039/c9nr02706h.
While red is one of the primary colors for display applications, the investigation of visible red emitting perovskites, particularly 2D perovskites, is relatively limited. In this work, we demonstrate a single-phase Ruddlesden-Popper quasi-2D (C3H7NH3)2CsPb2I7 perovskite for red color LEDs. Through increasing the annealing temperature of (C3H7NH3)2CsPb2I7 perovskite thin films, we have successfully achieved tunable emission wavelengths from 654 to 691 nm. Equally important, for all the quasi-2D perovskite LEDs, once the annealing temperature is fixed, the emission spectrum is independent of bias voltages, which is very important for their use in lighting and displays. With the analysis of the crystallinity, morphology, and thermodynamic stability of the quasi-2D perovskite, we find that the obtained (C3H7NH3)2CsPb2I7 perovskite is a single-phase quasi-2D perovskite with only n = 2 phase. Besides, we found that the red shifting of emission wavelength is caused by the increase of perovskite crystal size while increasing the annealing temperature. Our results also show that the temperature-induced color tunability can be applied to a series of quasi-2D perovskites with different alkylammonium cations. Importantly, we find that short alkylammonium spacers offer better electrical properties for efficient current transport and high performance in LED applications. This work contributes to controlling the optoelectronic properties of quasi-2D perovskites via controlling their crystal growth as well as paves the way to realize practical lighting and display applications of perovskite LEDs.
虽然红色是显示应用的主要颜色之一,但对可见红色发射钙钛矿,特别是二维钙钛矿的研究相对有限。在这项工作中,我们展示了一种单相的 Ruddlesden-Popper 准二维(C3H7NH3)2CsPb2I7 钙钛矿,用于红色发光二极管。通过提高(C3H7NH3)2CsPb2I7 钙钛矿薄膜的退火温度,我们成功地实现了从 654nm 到 691nm 的可调发射波长。同样重要的是,对于所有的准二维钙钛矿 LED,一旦退火温度固定,发射光谱就与偏置电压无关,这对于它们在照明和显示中的应用非常重要。通过对准二维钙钛矿的结晶度、形貌和热力学稳定性的分析,我们发现所得的(C3H7NH3)2CsPb2I7 钙钛矿是具有仅 n = 2 相的单相准二维钙钛矿。此外,我们发现发射波长的红移是由于钙钛矿晶体尺寸的增加而导致的,而随着退火温度的升高。我们的结果还表明,温度诱导的颜色可调性可以应用于具有不同烷基铵阳离子的一系列准二维钙钛矿。重要的是,我们发现短烷基铵间隔物可以提供更好的电性能,有利于电流传输,并在 LED 应用中实现高性能。这项工作通过控制钙钛矿的晶体生长来控制准二维钙钛矿的光电性能,为实现钙钛矿 LED 的实际照明和显示应用铺平了道路。