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Density functional theory study on adsorption of thiophene on TiO2 anatase (0 01) surfaces

机译:噻吩在TiO2锐钛矿(0 01)表面吸附的密度泛函理论研究

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In order to develop a fundamental understanding of the adsorption mechanism of thiophenic compounds on TiO2-based adsorbents for ultra-deep desulfurization of liquid hydrocarbon fuels, a density functional theory (DFT) study was conducted on the adsorption of thiophene over the TiO2 anatase (001) surface. The perfect, O-poor (with oxygen vacancies), and O-rich (with activated O2 on the surface) anatase (0 01) surfaces were built, and the interaction of thiophene molecule with these surfaces was examined. The adsorption configuration and adsorption energy on the different surfaces and sites were estimated. The results showed that thiophene may be adsorbed on both the perfect and O-poor surfaces through an interaction between the Ti cations on the surface and the S atom in thiophene, whereas on the O-rich surface through an interaction of the activated O atoms (the dissociatively or associatively adsorbed O2) on the surface with the S atom in thiophene to form a sulfone-like surface species. The adsorption of thiophene on the O-rich surface is significantly stronger than adsorption on the perfect and O-poor surfaces on the basis of the calculated adsorption energies. The results indicate that the activated O2 on the TiO2 anatase (001) surface may play an important role in the adsorption desulfurization over the TiO2-based adsorbents, and increased concentration of the activated O2 on the surface may result in improvement of the adsorption capacity of the adsorbents.
机译:为了深入理解噻吩化合物在基于TiO2的吸附剂上对液态烃燃料进行超深度脱硫的吸附机理,进行了密度泛函理论(DFT)研究,研究了噻吩在TiO2锐钛矿上的吸附(001 )表面。建立了理想的,贫O(具有氧空位)和富O(具有活化的O2)的锐钛矿(0 01)表面,并检查了噻吩分子与这些表面的相互作用。估算了不同表面和部位的吸附构型和吸附能。结果表明,通过表面上的Ti阳离子与噻吩中的S原子之间的相互作用,噻吩可能同时吸附在理想表面和贫O的表面上,而通过活化的O原子的相互作用在富O的表面上吸附(在表面上与噻吩中的S原子解离或缔合吸附的O2)形成类似砜的表面物质。根据计算得出的吸附能,噻吩在富含O的表面上的吸附要比在完全和贫O的表面上的吸附强得多。结果表明,TiO2锐钛矿(001)表面上的活化O2可能在基于TiO2的吸附剂上的吸附脱硫中起重要作用,且表面上活化O2浓度的增加可能导致吸附剂的吸附能力提高。吸附剂。

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