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Self-Assembly of Metal and Metal Oxide Nanoparticles and Nanowires into a Macroscopic Ternary Aerogel Monolith with Tailored Photocatalytic Properties

机译:金属和金属氧化物纳米粒子和纳米线的自组装成具有定制光催化性能的宏观三元气凝胶整体结构

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摘要

Self-assembly processes represent the most powerful strategy to produce complex materials with unique structural and compositional sophistication. Here we present such a self-assembly route to a three-component aerogel from preformed nanoparticle building blocks. Starting with a mixture of gold and anatase nanoparticles and tungsten oxide nanowires, controlled cogelation resulted in the formation of a macroscopic aerogel monolith with high specific surface area and porosity, remarkable transparency, and excellent crystallinity. The modular approach enables us to fine-tune the composition of the aerogels, and thus their properties, by choosing the appropriate building blocks and their relative concentration ratios. As an illustrative example, we show the targeted tailoring of the photocatalytic activity: the gold nanoparticles and the tungsten oxide nanowires both add their specific beneficial effects to the anatase aerogel matrix, leading to a superior performance of the three-component system.
机译:自组装过程代表了生产具有独特结构和组成复杂性的复杂材料的最有效策略。在这里,我们介绍了一种从预制的纳米颗粒构建块到三组分气凝胶的自组装途径。从金和锐钛矿纳米粒子与氧化钨纳米线的混合物开始,受控的凝胶化导致形成具有高比表面积和孔隙率,显着的透明度和出色的结晶度的宏观气凝胶单块。模块化方法使我们能够通过选择合适的结构单元及其相对浓度比来微调气凝胶的组成,从而微调其性能。作为一个说明性示例,我们显示了光催化活性的目标定制:金纳米颗粒和氧化钨纳米线都为锐钛矿气凝胶基质添加了特定的有益作用,从而导致了三组分系统的出色性能。

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