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温度相关的激子和陷阱相关的光致发光的 CdTe 量子点嵌入在 NaCl 基质中:在测温中的应用。

Temperature-Dependent Exciton and Trap-Related Photoluminescence of CdTe Quantum Dots Embedded in a NaCl Matrix: Implication in Thermometry.

机构信息

Department of Physics and Materials Science and Centre for Functional Photonics (CFP), City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong SAR.

Regional Centre of Advanced Technologies and Materials, Department of Physical Chemistry, Faculty of Science, Palacký University in Olomouc, Šlechtitelů 11, Olomouc, 783 71, Czech Republic.

出版信息

Small. 2016 Jan 27;12(4):466-76. doi: 10.1002/smll.201501984. Epub 2015 Nov 30.

Abstract

Temperature-dependent optical studies of semiconductor quantum dots (QDs) are fundamentally important for a variety of sensing and imaging applications. The steady-state and time-resolved photoluminescence properties of CdTe QDs in the size range from 2.3 to 3.1 nm embedded into a protective matrix of NaCl are studied as a function of temperature from 80 to 360 K. The temperature coefficient is found to be strongly dependent on QD size, with the highest sensitivity obtained for the smallest size of QDs. The emission from solid-state CdTe QD-based powders is maintained with high color purity over a wide range of temperatures. Photoluminescence lifetime data suggest that temperature dependence of the intrinsic radiative lifetime in CdTe QDs is rather weak, and it is mostly the temperature-dependent nonradiative decay of CdTe QDs which is responsible for the thermal quenching of photoluminescence intensity. By virtue of the temperature-dependent photoluminescence behavior, high color purity, photostability, and high photoluminescence quantum yield (26%-37% in the solid state), CdTe QDs embedded in NaCl matrices are useful solid-state probes for thermal imaging and sensing over a wide range of temperatures within a number of detection schemes and outstanding sensitivity, such as luminescence thermochromic imaging, ratiometric luminescence, and luminescence lifetime thermal sensing.

摘要

温度依赖的半导体量子点(QDs)光学研究对于各种传感和成像应用至关重要。本文研究了尺寸范围在 2.3 到 3.1nm 的 CdTe QDs 在 NaCl 保护基质中作为温度函数从 80 到 360K 的稳态和时间分辨光致发光性质。发现温度系数强烈依赖于 QD 尺寸,对于最小尺寸的 QD 获得了最高的灵敏度。固态 CdTe QD 基粉末的发射在很宽的温度范围内保持着高的颜色纯度。光致发光寿命数据表明,CdTe QD 中本征辐射寿命对温度的依赖性相当弱,主要是 CdTe QD 的温度依赖非辐射衰减导致光致发光强度的热猝灭。由于温度依赖的光致发光行为、高的颜色纯度、光稳定性和高的光致发光量子产率(在固态中为 26%-37%),嵌入 NaCl 基质中的 CdTe QD 是在许多检测方案和出色的灵敏度范围内用于宽温度范围内热成像和传感的有用固态探针,例如发光温致变色成像、比率发光和发光寿命热传感。

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