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3D assembly of silica encapsulated semiconductor nanocrystals

机译:3 d的硅半导体封装纳米晶体

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摘要

Non-ordered porous networks, so-called aerogels, can be achieved by the 3D assembly of quantum dots (QDs). These materials are well suited for photonic applications, however a certain quenching of the photoluminescence (PL) intensity is observed in these structures. This PL quenching is mainly attributed to the energy transfer mechanisms that result from the close contact of the nanoparticles in the network. Here, we demonstrate the formation of a novel aerogel material with non-quenching PL behaviour by non-classical, reversible gel formation from tetrazole capped silica encapsulated QDs. Monitoring of the gelation/degelation by optical spectroscopy showed that the optical properties of the nanocrystals could be preserved in the 3D network since no spectral shifts and lifetime shortening, which can be attributed to the coupling between QDs, are observed in the gels as compared to the original colloidal solutions. In comparison with other QD-silica monoliths, QDs in our gels are homogeneously distributed with a distinct and controllable distance. In addition we show that the silica shell is porous and allows metal ions to pass through the shell and interact with the QD core causing detectable changes of the emission properties. We further show the applicability of this gelation method to other QD materials which sets the stage for facile preparation of a variety of mixed gel structures.
机译:Non-ordered多孔网络,所谓的气凝胶,可以通过量子的三维装配吗量子点(量子点)。光子应用,然而一定淬火的光致发光(PL)强度在这些结构观察。淬火主要归因于能量转移机制,结果接近纳米颗粒的接触网络。在这里,我们展示小说的形成气凝胶材料non-quenching PL行为非经典的、可逆的凝胶形成四唑的硅量子点封装。监测凝胶/ degelation光学光谱分析表明,光学性质的纳米晶体可以保存在3 d网络因为没有光谱变化和寿命缩短,这可以归因于量子点之间的耦合,是观察在凝胶相比原来的胶体的解决方案。量子点与其他QD-silica巨石比较,我们的凝胶是均匀分布的截然不同的和可控的距离。我们表明,硅壳是多孔和金属离子可以通过壳与QD核心交互导致检测变化的排放特性。显示这个凝胶方法的适用性其他QD材料奠定了基础简单的制备各种各样的混合凝胶结构。

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