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Mapping surface-modified titania nanoparticles with implications for activity and facet control

机译:绘制表面改性的二氧化钛纳米颗粒的图谱,对活性和刻面控制产生影响

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The use of surface-directing species and surface additives to alter nanoparticle morphology and physicochemical properties of particular exposed facets has recently been attracting significant attention. However, challenges in their chemical analysis, sometimes at trace levels, and understanding their roles to elucidate surface structure–activity relationships in optical (solar cells) or (photo)catalytic performance and their removal are significant issues that remain to be solved. Here, we show a detailed analysis of TiO2 facets promoted with surface species (OH, O, SO4, F) with and without post-treatments by 31P adsorbate nuclear magnetic resonance, supported by a range of other characterization tools. We demonstrate that quantitative evaluations of the electronic and structural effects imposed by these surface additives and their removal mechanisms can be obtained, which may lead to the rational control of active TiO2 (001) and (101) facets for a range of applications.
机译:最近,使用表面定向物质和表面添加剂改变特定暴露面的纳米颗粒形态和理化性质引起了人们的极大关注。然而,在其化学分析中有时甚至是痕量水平方面的挑战,以及了解它们在阐明光学(太阳能电池)或(光)催化性能及其去除中的表面结构-活性关系中所扮演的角色仍然是有待解决的重要问题。在这里,我们显示了对通过表面物种(OH,O,SO4,F)促进的TiO2刻面的详细分析,该表面种类通过和不通过31P吸附核磁共振进行后处理,并得到其他一系列表征工具的支持。我们证明,可以得到由这些表面添加剂及其去除机理所施加的电子和结构效应的定量评估,这可能导致活性TiO2(001)和(101)刻面在一系列应用中的合理控制。

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