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Adsorption properties of trifluoroacetic acid on anatase (101) and (001) surfaces: a density functional theory study

机译:三氟乙酸在锐钛矿(101)和(001)表面上的吸附性能:密度泛函理论研究

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The interaction of trifluoroacetic acid with anatase TiO2(101) and TiO2(001) surfaces has been studied by means of periodic density functional theory based calculations. On the former, the interaction is weak with the adsorbed molecules in a configuration almost indistinguishable from the gas phase structure. On the latter, the interaction is very strong; the molecule adsorbs as trifluoroacetate and releases a proton that binds an oxygen surface atom with a significant distortion of the substrate. The difference in adsorption the mode and strength can be understood from the different structural features of both surfaces and provides arguments to the role of trifluoroacetic as a morphological control agent in the solvothermal synthesis of TiO2 nanoparticles with predominant (001) facets. This, in turn, has a very significant impact on industrial production strategies of value- added TiO2 for photocatalytic applications. Analysis of calculated core level binding energies for F(1s) confirms the experimental assignment to F at the surface as F- at Ti surface sites and to F in -CF3 groups of the adsorbed molecule.
机译:通过基于周期性密度泛函理论的计算研究了三氟乙酸与锐钛矿型TiO2(101)和TiO2(001)表面的相互作用。在前者上,与吸附分子的相互作用较弱,其构型与气相结构几乎没有区别。在后者上,交互作用非常强;该分子以三氟乙酸盐的形式吸附并释放出质子,该质子与氧表面原子结合,使底物发生明显变形。可以通过两个表面的不同结构特征来理解吸附方式和强度的差异,并为三氟乙酸在溶剂热合成具有主要(001)面的TiO2纳米粒子中作为形态控制剂的作用提供了依据。反过来,这对用于光催化应用的增值TiO2的工业生产策略具有非常重要的影响。对F(1s)的计算得出的核心能级结合能的分析证实了实验对表面F的分配是在Ti表面位点的F-以及对吸附分子的-CF3基团的F的赋值。

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