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Tunable luminescence properties of AgInS_2-ZnS and AgInS_2-ZnS@ZnS particles

机译:AgInS_2-ZnS和AgInS_2-ZnS @ ZnS颗粒的可调发光性能

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Luminescent nanocrystals of AgInS_2-ZnS (ZAIS) and core-shell AgInS_2-ZnS@ZnS (ZAIS@ZnS) nanostructures were synthesized with different compositions of the core AgInS_2-ZnS solid solution. With this method, luminophores displaying a broad emission spectrum and a maximum emission tunable between 555 nm and 825 nm could be obtained. Their optical absorption and luminescence properties were studied in order to understand the evolution of their optical band gap, their photoluminescence quantum yield (PLQY) and the amount of defects. Ageing tests of the colloidal solutions of these nanocrystals under blue light excitation were also performed. We show that the high PLQY of ZAIS nanocrystals is correlated to the amount of defects they contain which explains the effect of both the composition and the synthesis method on the PLQY. We also show that ZnS coated nanocrystals exhibit high photostability under blue light excitation compared to their non-coated counterparts. These results emphasize the potential of ZAIS nanocrystals as highly luminescent and stable luminophores for white-LED applications.
机译:合成了具有不同组成的核心AgInS_2-ZnS固溶体的AgInS_2-ZnS(ZAIS)和壳核AgInS_2-ZnS @ ZnS(ZAIS @ ZnS)纳米结构的发光纳米晶体。使用这种方法,可以获得显示宽发射光谱和在555 nm和825 nm之间可调的最大发射的发光体。为了了解它们的光学带隙,光致发光量子产率(PLQY)和缺陷数量,研究了它们的光吸收和发光特性。还对这些纳米晶体的胶体溶液在蓝光激发下进行了老化测试。我们表明,ZAIS纳米晶体的高PLQY与它们所包含的缺陷数量有关,这解释了PLQY的组成和合成方法的影响。我们还表明,与未涂覆的对应物相比,ZnS涂覆的纳米晶体在蓝光激发下表现出高的光稳定性。这些结果强调了ZAIS纳米晶体作为白光LED应用中的高发光和稳定发光体的潜力。

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