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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Silica sacrificial layer-assisted in-plane incorporation of Au nanoparticles into mesoporous titania thin films through different reduction methods
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Silica sacrificial layer-assisted in-plane incorporation of Au nanoparticles into mesoporous titania thin films through different reduction methods

机译:二氧化硅牺牲层辅助通过不同还原方法将金纳米粒子平面内掺入介孔二氧化钛薄膜中

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This study focuses on the incorporation of gold nanoparticles (Au NPs) into our previously synthesized mesoporous titania thin films consisting of titania nanopillars and inverse mesospace (C. W. Wu, T. Ohsuna, M. Kuwabara and K. Kuroda, J. Am. Chem. Soc., 2006, 128, 4544-4545, denoted as MTTFs). Recently, mesoporous titania materials doped with noble metals such as gold have attracted considerable attention because noble metals can enhance the efficiency of mesoporous titania-based devices. In this research, we attempted to use four different reduction methods (i.e., thermal treatment, photo irradiation, liquid immersion, and vapor contacting) to introduce gold nanoparticles (Au NPs) into MTTFs. The synthesized Au@MTTFs were characterized by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). We further systematically investigated the formation mechanism of gold nanoparticles on the external and internal surfaces of the MTTFs. With the assistance of a silica sacrificial layer, well-dispersed Au NPs with sizes of 4.1 nm were obtained inside the MTTF by photo irradiation. The synthesized Au@MTTF materials show great potential in various photo-electronic and photo-catalytic applications.
机译:这项研究的重点是将金纳米颗粒(Au NPs)掺入我们以前合成的介孔二氧化钛薄膜中,该薄膜由二氧化钛纳米柱和逆介观空间组成(CW Wu,T.Ohsuna,M.Kuwabara和K.Kuroda,J.Am.Chem。 Soc。,2006,128,4544-4545,表示为MTTF)。近来,掺杂有贵金属如金的中孔二氧化钛材料引起了相当大的关注,因为贵金属可以提高基于中孔二氧化钛的装置的效率。在这项研究中,我们尝试使用四种不同的还原方法(即热处理,光辐照,液浸和蒸汽接触)将金纳米颗粒(Au NPs)引入MTTF中。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)对合成的Au @ MTTFs进行表征。我们进一步系统地研究了MTTFs内外表面上金纳米颗粒的形成机理。借助于二氧化硅牺牲层,通过光辐照在MTTF内部获得了大小为4.1nm的分散良好的Au NP。合成的Au @ MTTF材料在各种光电和光催化应用中显示出巨大的潜力。

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