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The photoinduced formation of gold nanoparticles in a mesoporous titania gel monolith

机译:介孔二氧化钛凝胶整料中金纳米颗粒的光诱导形成

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摘要

Spherical gold nanoparticles with diameters less than 8 nm have been prepared by the photoinduced reduction of hydrogen tetrachloroaurate via a one-step sol—gel process. The as-prepared Au nanoparticles are highly dispersed in a mesoporous TiO_2 gel monolith and are exposed to the external ambient atmosphere with a surface plasmon resonance absorption band centered at 578 nm. The results show that the size, size distribution, and dispersion of Au nanoparticles in the titania monolith are strongly dependent on the ultraviolet irradiation time of AuC14 ions in the titania sol. The Au nanoparticles are found to be more uniform and smaller in size and more highly dispersed in the titania monolith with longer irradiation time. The crystallization of titania from the amorphous phase to the anatase phase is found to be suppressed at room temperature, and this is attributed to the smaller and highly dispersed Au nanoparticles on the surface of the colloids of titania.
机译:直径小于8 nm的球形金纳米粒子是通过一步法溶胶-凝胶法光诱导还原四氯金酸氢盐制得的。所制备的Au纳米颗粒高度分散在介孔TiO_2凝胶整料中,并以中心在578 nm处的表面等离子体共振吸收带暴露于外部环境中。结果表明,Au纳米粒子在二氧化钛整料中的尺寸,尺寸分布和分散度强烈依赖于二氧化钛溶胶中AuC14离子的紫外线照射时间。发现Au纳米颗粒更均匀且尺寸更小,并且在更长的照射时间下更高度分散在二氧化钛整体物中。发现在室温下二氧化钛从无定形相到锐钛矿相的结晶被抑制,这归因于二氧化钛胶体表面上较小且高度分散的Au纳米颗粒。

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