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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Synthesis of gold nanoparticles in sol-gel glass porogens containing [bmim][BF4] ionic liquid
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Synthesis of gold nanoparticles in sol-gel glass porogens containing [bmim][BF4] ionic liquid

机译:含[bmim] [BF4]离子液体的溶胶-凝胶玻璃致孔剂中金纳米颗粒的合成

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摘要

The [bmim][BF4] ionic liquid effect on gold nanoparticles formation in silica sol-gel materials is studied in order to produce gel-derived glasses with optical properties. The characteristic red color from gold nanoparticles is observed for transparent glass monoliths obtained sintering, between 365 and 425 °C, a silica sol-gel precursor containing HAuCl4·3H2O and [bmim][BF4], under normal atmospheric conditions. The effect of sintering the ionogel at different temperatures (T_(sint)) or times (tsint) on the optical properties, shape, size, and distribution of gold nanoparticles is discussed. Presence of the gold particles is observed using transmission electron microscopy images followed by energy dispersive X-ray spectroscopy analysis. The thermal decomposition of [bmim][BF4] in the ionogel is investigate using calori-metric and spectroscopic techniques, and by analysis of volatile compounds released by the sol-gel material during sintering. With these results a mechanism for the formation of the gold nanoparticles is proposed, where a first ionic liquid degradation step provides the reductive environment that enables the gold nanoparticles production at the range of temperatures between 350 and 425 °C. Upon sintering the synthesized materials the ionic liquid acts as a sacrificial additive and the ionic liquid thermal decomposition products enables the formation of gold nanoparticles in the sol-gel matrix.
机译:研究了[bmim] [BF4]离子液体对二氧化硅溶胶-凝胶材料中金纳米颗粒形成的影响,以生产具有光学特性的凝胶玻璃。在正常大气条件下,在365至425℃之间烧结的透明玻璃整料中,观察到来自金纳米粒子的特征性红色,该透明玻璃整料在含有HAuCl4·3H2O和[bmim] [BF4]的二氧化硅溶胶-凝胶前体中烧结。讨论了在不同温度(T_(sint))或时间(tsint)下烧结离子凝胶对金纳米粒子的光学性质,形状,尺寸和分布的影响。使用透射电子显微镜图像,然后进行能量色散X射线光谱分析,观察到金颗粒的存在。使用量热和光谱技术,并通过分析烧结过程中溶胶-凝胶材料释放的挥发性化合物,研究了离子凝胶中[bmim] [BF4]的热分解。利用这些结果,提出了形成金纳米颗粒的机理,其中第一离子液体降解步骤提供了还原环境,该还原环境使得能够在350至425℃的温度范围内生产金纳米颗粒。在烧结合成的材料时,离子液体充当牺牲添加剂,并且离子液体的热分解产物能够在溶胶-凝胶基质中形成金纳米颗粒。

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