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Tuning Optical Properties of AgInS2 Quantum Dots by the Change of Ag-In Stoichiometry for their Light-emitting Applications

机译:通过改变Ag-In化学计量的agins2量子点的光学性质,其发光应用

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Due to environmental friendly composition and low toxicity together with high quantum yield ternary I-III-IV semiconductor nanocrystals competes successfully with wellunderstood II-IV quantum dots. However, the undeveloped synthesis procedure, a vast number of compounds, and competing reactions as well as poor understanding of the origin of their optical properties leave a wide place to research. AgInS}}$_{mathbf{2}}$ quantum dots were synthesized in aqueous media by adding of sulfur precursor solution to the solution containing Ag and different concentrations of In cations together with mercaptoacetic acid as a stabilizer. We have shown the complex dependence of the optical properties of AgInS}$_{mathbf{2}}$ quantum dots on In to Ag precursor ratio arising from the changing of intrinsic point defect structure. This dependence opens the way of tuning their color emission for light-emitting devises creation.
机译:由于环保组合物和高量子产量的低毒性,三元I-III-IV-IV半导体纳米晶体与Wellunderstood II-IV量子点成功竞争。然而,未开发的合成程序,大量化合物,以及竞争反应以及对其光学性质起源的理解差,留下了广泛的研究。 $ _ { MATHBF {2}} $ _ { MATHBF {2}} $量子点通过向含硫前体溶液加入含有Ag和不同浓度的阳离子和巯基乙酸作为稳定剂的溶液中合成。我们已经示出了agins的光学性质的复杂依赖性} $ _ { mathbf {2}} $量子点,从内在点缺陷结构的变化发生时产生的Ag前体比。这种依赖性打开了调整它们的色彩发射的方式,以便发光设计创造。

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