超薄硒化镉纳米卷的光谱和动力学特性

Q4 Engineering
D.S. Daibagya
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引用次数: 0

摘要

研究了厚度为2.5层的超薄胶体半导体硒化镉纳米卷在室温下的光学和发光特性。以二水乙酸镉Cd(CH3COO)2·2H2O和硒化三辛基膦分别为镉和硒的前驱体,油酸溶液和十八烯溶液也用于胶体合成研究对象。利用光纤电荷耦合器件光谱仪记录了硒化镉纳米卷的发光光谱。利用时间相关单光子计数技术测量了纳米粒子的光谱分辨光致发光衰减。硒化镉纳米卷的发光由带间发光带和复合发光带组成。我们发现复合发光的归一化光子数大于带间发光的归一化光子数。我们测定了超薄胶体半导体硒化镉纳米卷的主波长、色度坐标和相关色温。这些超薄硒化镉纳米卷在发光二极管中有很好的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectral and kinetic characteristics of ultrathin cadmium selenide nanoscrolls
We have studied the optical and luminescence properties at room temperature of ultrathin colloidal semiconductor cadmium selenide nanoscrolls with a thickness of 2.5 monolayers. For colloidal synthesis of the objects under study, cadmium acetate dihydrate Cd(CH3COO)2·2H2O and trioctylphosphine selenide were used as precursors of cadmium and selenium, respectively, and solutions of oleic acid and octadecene were also used. Luminescence spectrum of cadmium selenide nanoscrolls was recorded using a fiber charge coupled device spectrometer. Spectrally resolved photoluminescence decays for nanoparticles were measured with the use of time-correlated single photon counting technique. The emission of the cadmium selenide nanoscrolls consists of interband and recombination luminescence bands. We found that the normalized photon numbers of recombination luminescence are larger than the normalized photon numbers of interband luminescence. We determined dominant wavelengths, chromaticity coordinates, and correlated color temperatures of ultrathin colloidal semiconductor cadmium selenide nanoscrolls. These ultrathin cadmium selenide nanoscrolls are promising for application in light-emitting diodes.
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
102
审稿时长
8 weeks
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