Ahmed Tasnim, Seth Sudipta, Samanta Anunay
School of Chemistry , University of Hyderabad , Hyderabad 500046 , India.
ACS Nano. 2019 Nov 26;13(11):13537-13544. doi: 10.1021/acsnano.9b07471. Epub 2019 Nov 15.
Exploration of the full potential of the perovskite nanocrystals (NCs) for different applications requires a thorough understanding of the pathways of recombination of the photogenerated charge carriers and associated dynamics. In this work, we have tracked the recombination routes of the charge carriers by probing photoluminescence (PL) intermittency of the immobilized and freely diffusing single CsPbBr NCs employing a time-tagged-time-resolved method. The immobilized single CsPbBr NCs show a complex PL time-trace, a careful analysis of which reveals that nonradiative band-edge recombination through trap states, trion recombination, and trapping of the hot carriers contribute to the blinking behavior of any given NC. A drastically suppressed PL blinking observed for the NCs treated with a tetrafluoroborate salt indicates elimination of most of the undesired recombination processes. A fluorescence correlation spectroscopy (FCS) study on the freely diffusing single NCs shows that enhanced PL and suppressed blinking of the treated particles are the outcome of an increase in per-particle brightness, not due to any increase in the number of particles undergoing "off"-"on" transition in the observation volume. The mechanistic details obtained from this study on the origin of blinking in CsPbBr NCs provide deep insight into the radiative and nonradiative charge carrier recombination pathways in these important materials, and this knowledge is expected to be useful for better design and development of bright photoluminescent samples of this class for optoelectronic applications.
要全面探索钙钛矿纳米晶体(NCs)在不同应用中的潜力,需要深入了解光生电荷载流子的复合途径及相关动力学。在这项工作中,我们采用时间标记时间分辨方法,通过探测固定化和自由扩散的单个CsPbBr NCs的光致发光(PL)间歇性,追踪了电荷载流子的复合路径。固定化的单个CsPbBr NCs呈现出复杂的PL时间轨迹,仔细分析表明,通过陷阱态的非辐射带边复合、三重激子复合以及热载流子的俘获,共同导致了任何给定NC的闪烁行为。用四氟硼酸盐处理的NCs观察到PL闪烁显著抑制,这表明消除了大部分不期望的复合过程。对自由扩散的单个NCs进行的荧光相关光谱(FCS)研究表明,处理后的粒子PL增强和闪烁抑制是单个粒子亮度增加的结果,而不是由于观察体积内经历“关”-“开”转变的粒子数量增加。这项关于CsPbBr NCs闪烁起源的研究获得的机理细节,为这些重要材料中的辐射和非辐射电荷载流子复合途径提供了深入见解,预计这一知识将有助于更好地设计和开发用于光电子应用的此类明亮光致发光样品。