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The adsorption characteristics and degradation mechanism of tinidazole on an anatase TiO2 surface: a DFT study

机译:锡咪唑对锐钛矿TiO2表面的吸附特性及降解机制:DFT研究

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The adsorption characteristics and degradation mechanism of tinidazole on TiO _(2) (101) and (001) surfaces under vacuum and aqueous solution conditions were studied by density functional theory (DFT). The results show that tinidazole can adsorb on the surfaces of TiO _(2) (101) and (001) under different conditions. The hydrogen bond generated during the adsorption process can enhance the stability of the adsorption configuration, which makes the bond length of C–N of tinidazole longer and finally facilitates the ring-opening degradation reaction. As for the mechanism of the ring-opening degradation reaction, it was found that ring-opening can be carried out along reaction route II on both crystal surfaces, and the reaction activation energy is lower on (101) surface. Under the conditions of aqueous solution, the decrease of the activation energy of the ring-opening degradation reaction indicates that the solvent conditions can promote the degradation reaction.
机译:通过密度函数理论(DFT)研究了真空和水溶液条件下TiOIdazole对TiO酰基(2)(101)和(001)表面的吸附特性和降解机制。结果表明,锡西唑可以在不同条件下吸附在TiO _(2)(101)和(001)的表面上。在吸附过程中产生的氢键可以增强吸附构型的稳定性,这使得锡咪唑的C-N的键长长度更长并且最终促进开环降解反应。对于开环降解反应的机理,发现开环可以在两个晶体表面上沿反应途径进行,反应活化能量较低(101)表面。在水溶液的条件下,开环降解反应的活化能的降低表明溶剂条件可促进降解反应。

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