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Amorphous titania matrix impregnated with Ag nanoparticles as a highly efficient visible- and sunlight-active photocatalyst material

机译:非晶二氧化钛基质用Ag纳米粒子浸渍为高效的可见光和阳光活性光催化剂材料

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Amorphous titania matrix impregnated with Ag nanoparticles has been synthesised based on a facile colloidal synthesis route and has been explored for visible- and sunlight-activated photocatalytic applications. The photocatalytic activity of the material under visible light and sunlight irradiation was demonstrated by investigations on the degradation of a common pollutant, nitrobenzene. In comparison to other TiO(2-)based nanomaterials, this amorphous titania impregnated with Ag nanoparticles was found to be highly efficient for visible light as well as sunlight-active photocatalytic applications. The superior catalytic activity could be attributed to the efficient charge separation and lessened recombination of the photo-generated electrons and holes at the Ag-titania interface and the presence of multiple metal-metal oxide interfaces due to dispersed impregnation of Ag nanoparticles on amorphous titania matrix. Also, it was found that the photocatalytic activity of the prepared nanocomposites had better efficiency under the sunlight irradiation, which may be attributed to the plasmonic heating of the Ag nanoparticles in the sunlight. Fundamentally, this work illustrates that the dispersed impregnation of noble metal nanoparticles on semiconductor metal oxide matrix can be used to tune the photophysical properties of the final material to enhance its photocatalytic performance.
机译:基于容易的胶体合成途径合成了用Ag纳米颗粒浸渍的无定形二氧化钛基质,并已探讨可见光和阳光激活的光催化应用。通过对普通污染物,硝基苯的降解来证明了可见光和阳光照射下的材料的光催化活性。与其他基于TiO(2-)基的纳米材料相比,发现这种用Ag纳米颗粒浸渍的无定形二氧化亚亚亚亚亚亚亚亚菊酯对于可见光以及阳光活性光催化应用是高效的。优异的催化活性可归因于在Ag-tizilia界面上的高效电荷分离和减少光产生的电子和孔的重组,以及由于Ag纳米颗粒的分散浸渍而导致的多金属 - 金属氧化物界面的存在。此外,发现制备的纳米复合材料的光催化活性在阳光照射下具有更好的效率,这可能归因于阳光下Ag纳米颗粒的等离子体加热。从根本上说,这项工作说明了半导体金属氧化物基质上的贵金属纳米颗粒的分散浸渍可用于调节最终材料的光性特性,以提高其光催化性能。

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