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Design of metal/dielectricanocrystals core/shell/shell nano-structures for the fluorescence enhancement of cadmium-free semiconductor nanocrystals

机译:金属/介电/纳米晶体核/壳/壳纳米结构的设计,用于无镉半导体纳米晶体的荧光增强

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AgInS2-ZnS (ZAIS) quaternary semiconductors nanocrystals are versatile cadmium-free luminescent nanomaterials. Their broad emission spectrum and strong absorption make them ideal for the development of new white-LED devices taking advantage of nano-optical phenomena. We recently found strategies to increase the photoluminescence quantum yield of ZAIS nanocrystals up to 80%. In a second step toward high efficiency luminescent materials, we aim at increasing the net conversion efficiency of ZAIS nanocrystals by coupling them with metallic nano-antennae. Indeed, by grafting ZAIS nanocrystals onto carefully chosen metal/dielectric core/shell nanoparticles, both the absorption and emission processes can be tuned and enhanced. A finite-element simulation based on the discrete dipole approximation (DDA) was used to predict the nano-optical behavior of silver@oxide@ZAIS nanostructures. Desirable combinations of materials and geometry for the antennae were identified. A chemical method for the synthesis of the simulated nanostructures was developed. The coupling of ZAIS nanocrystals emission with the plasmonic structure is experimentally observed and is ion accordance with our predictions.
机译:AgInS2-ZnS(ZAIS)四元半导体纳米晶体是通用的无镉发光纳米材料。它们宽的发射光谱和强吸收性使其成为开发利用纳米光学现象的新型白光LED器件的理想选择。我们最近发现了将ZAIS纳米晶体的光致发光量子产率提高至80%的策略。在迈向高效发光材料的第二步中,我们旨在通过将ZAIS纳米晶体与金属纳米天线耦合来提高其净转换效率。实际上,通过将ZAIS纳米晶体接枝到精心选择的金属/介电核/壳纳米颗粒上,吸收和发射过程都可以得到调整和增强。基于离散偶极近似(DDA)的有限元模拟被用来预测silica @ oxide @ ZAIS纳米结构的纳米光学行为。确定了天线的材料和几何形状的理想组合。开发了一种化学方法来合成模拟的纳米结构。 ZAIS纳米晶体发射与等离子体结构的耦合是实验观察到的,并且符合我们的预测。

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