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一步法沉积具有嵌入式量子点的钙钛矿基质的互穿层。

Single step deposition of an interacting layer of a perovskite matrix with embedded quantum dots.

机构信息

Institute of Advanced Materials (INAM), UniversitatJaume I, 12006 Castelló, Spain.

出版信息

Nanoscale. 2016 Aug 14;8(30):14379-83. doi: 10.1039/c6nr04082a. Epub 2016 Jul 20.

DOI:10.1039/c6nr04082a
PMID:27437778
Abstract

Hybrid lead halide perovskite (PS) derivatives have emerged as very promising materials for the development of optoelectronic devices in the last few years. At the same time, inorganic nanocrystals with quantum confinement (QDs) possess unique properties that make them suitable materials for the development of photovoltaics, imaging and lighting applications, among others. In this work, we report on a new methodology for the deposition of high quality, large grain size and pinhole free PS films (CH3NH3PbI3) with embedded PbS and PbS/CdS core/shell Quantum Dots (QDs). The strong interaction between both semiconductors is revealed by the formation of an exciplex state, which is monitored by photoluminescence and electroluminescence experiments. The radiative exciplex relaxation is centered in the near infrared region (NIR), ≈1200 nm, which corresponds to lower energies than the corresponding band gap of both perovskite (PS) and QDs. Our approach allows the fabrication of multi-wavelength light emitting diodes (LEDs) based on a PS matrix with embedded QDs, which show considerably low turn-on potentials. The presence of the exciplex state of PS and QDs opens up a broad range of possibilities with important implications in both LEDs and solar cells.

摘要

近年来,混合卤化铅钙钛矿(PS)衍生物已成为开发光电设备的极具前景的材料。与此同时,具有量子限制(QD)的无机纳米晶体具有独特的性质,使其成为开发光伏、成像和照明应用等领域的理想材料。在这项工作中,我们报告了一种新的方法,用于沉积高质量、大晶粒尺寸且无针孔的 PS 薄膜(CH3NH3PbI3),其中嵌入了 PbS 和 PbS/CdS 核/壳量子点(QD)。两种半导体之间的强相互作用通过形成激基复合物态来揭示,通过光致发光和电致发光实验来监测。辐射激基复合物松弛集中在近红外区域(NIR),约为 1200nm,这对应于比钙钛矿(PS)和 QD 的相应带隙更低的能量。我们的方法允许在嵌入 QD 的 PS 基质上制造多波长发光二极管(LED),其开启电压相当低。PS 和 QD 的激基复合物态的存在为 LED 和太阳能电池开辟了广泛的可能性,具有重要的意义。

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