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Facile preparation of transparent and dense CdS-silica gel glass nanocomposites for optical limiting applications

机译:肤浅的制备透明和密度CdS-silica凝胶玻璃光学纳米复合材料限制了应用

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摘要

To realize their practical and operable applications as a potential optical limiting (OL) material, quantum dots (QDs) need to have good processability by incorporating them into optical-quality matrices. This work reports a facile route for the room-temperature preparation of large, stable transparent monolithic CdS nanocomposites which can be easily extended to allow the introduction of acid-sensitive functional molecules/nanoparticles into a silica network by sol-gel chemistry. Our strategy involves a two-step sol-gel process (acid-catalyst hydrolysis and basic-catalyst condensation) and the co-condensation of the resulting alkoxysilane-capped CdS QDs with other alkoxysilanes, which allows the CdS QDs to become part of the silica covalent network. The degradation and agglomeration of CdS QDs were thereby effectively restrained, and large monolithic transparent CdS-silica gel glass was obtained. Using Z-scan theory and the resulting open-aperture Z-scan curves, the nonlinear extinction coefficient of the CdS-silica nanocomposite gel glass was calculated to be 1.02 x 10~(-14) cm W~(-1), comparable to that of the parent CdS QD dispersion, indicating their promise for OL applications.
机译:意识到他们的实用和可操作的应用程序作为一个潜在的光学限制(OL)材料、量子点(量子点)需要好通过将他们纳入加工性能光学质量矩阵。灵巧的室温制备路线大型、稳定透明的单片cd可以很容易地扩展到纳米复合材料允许acid-sensitive的引入功能分子/纳米二氧化硅网络由溶胶-凝胶化学。包括一个两步溶胶-凝胶过程(酸催化剂水解和basic-catalyst的co-condensation凝结)导致量子点alkoxysilane-capped cd和其他量子点alkoxysilanes,它允许CdS硅原子晶体的一部分。退化和量子点聚集的cd从而有效地克制,和大单片透明CdS-silica凝胶玻璃获得的。开口Z-scan曲线的非线性CdS-silica的消光系数纳米复合凝胶玻璃计算是1.02x 10 ~(-14)厘米W ~(1),可比的父cd QD分散,说明他们OL应用程序的承诺。

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