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Active photonic devices based on colloidal semiconductor nanocrystals and organometallic halide perovskites

机译:基于胶体半导体纳米晶体和有机金属卤化物钙钛矿的有源光子器件

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摘要

Semiconductor nanocrystals have arisen as outstanding materials to develop a new generation of optoelectronic devices. Their fabrication under simple and low cost colloidal chemistry methods results in cheap nanostructures able to provide a wide range of optical functionalities. Their attractive optical properties include a high absorption cross section below the band gap, a high quantum yield emission at room temperature, or the capability of tuning the band-gap with the size or the base material. In addition, their solution process nature enables an easy integration on several substrates and photonic structures. As a consequence, these nanoparticles have been extensively proposed to develop several photonic applications, such as detection of light, optical gain, generation of light or sensing. This manuscript reviews the great effort undertaken by the scientific community to construct active photonic devices based on these nanoparticles. The conditions to demonstrate stimulated emission are carefully studied by comparing the dependence of the optical properties of the nanocrystals with their size, shape and composition. In addition, this paper describes the design of different photonic architectures (waveguides and cavities) to enhance the generation of photoluminescence, and hence to reduce the threshold of optical gain. Finally, semiconductor nanocrystals are compared to organometallic halide perovskites, as this novel material has emerged as an alternative to colloidal nanoparticles.
机译:半导体纳米晶体已经成为开发新一代光电器件的杰出材料。它们在简单且低成本的胶体化学方法下的制造导致能够提供广泛的光学功能的廉价纳米结构。它们具有吸引人的光学特性,包括在带隙以下的高吸收截面,在室温下的高量子产率发射或根据尺寸或基材调节带隙的能力。此外,它们的溶液处理特性使它们可以轻松集成在多个基板和光子结构上。结果,已经广泛提出了这些纳米颗粒以发展几种光子应用,例如光的检测,光学增益,光的产生或感测。这份手稿回顾了科学界为基于这些纳米粒子构建有源光子器件而付出的巨大努力。通过比较纳米晶体的光学性质与其大小,形状和组成的依赖性,仔细研究了证明受激发射的条件。另外,本文描述了不同光子架构(波导和腔)的设计,以增强光致发光的产生,从而降低光增益的阈值。最后,将半导体纳米晶体与有机金属卤化物钙钛矿进行比较,因为这种新型材料已成为胶体纳米颗粒的替代品。

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