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Theoretical and Spectroscopic Study of the Effect of Ring Substitution on the Adsorption of Anisole on Platinum

机译:环取代对苯甲醚在铂上的吸附作用的理论和光谱研究

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The adsorption of anisole,3,5-dimethylanisole,and 3,5-bis-(trifluoromethyl)-anisole on Pt(111) was studied theoretically and compared to the adsorption of benzene using relativistically corrected density functional theory.A cluster of 31 platinum atoms was used to simulate the surface.The three anisoles were found to be less strongly adsorbed than the parent molecule benzene,3,5-bis-(trifluoromethyl)-anisole showing weakest adsorption,with an adsorption energy of only one-third that of benzene.The theoretical study was complemented by in situ ATR-IR spectroscopy of the adsorption of the anisole derivatives on a polycrystalline Pt film.The spectroscopic study indicated that the adsorption strength of the anisoles follows the same order as predicted by the calculations.In addition,catalytic hydrogenation tests showed that the propensity to aromatic ring hydrogenation can also be correlated to the mode and strength of adsorption of the anisoles.The degree of saturation followed the same order as the adsorption strength found by the calculations and indicated by spectroscopy.Although 3,5-dimethyl substitution on anisole resulted in only a partial loss of adsorption energy and reactivity toward ring hydrogenation as compared to anisole,the substitution by CF_3 groups led to a large loss of adsorption energy and complete loss of reactivity toward aromatic ring saturation.Along with the study of the substituent effect on the adsorption of aromatic molecules,the correlation between adsorption and propensity to saturation of aromatic substrates could be corroborated.
机译:从理论上研究了苯甲醚,3,5-二甲基苯甲醚和3,5-双-(三氟甲基)-苯甲醚在Pt(111)上的吸附,并通过相对论校正的密度泛函理论与苯的吸附进行了比较。一簇31铂金原子被用来模拟表面。发现三个异氰酸酯的吸附力比母体分子苯,3,5-双-(三氟甲基)-茴香醚的吸附力最弱,吸附能仅为苯甲酸的三分之一。该理论研究得到了原位ATR-IR光谱学对苯甲醚衍生物在多晶Pt膜上的吸附的补充,该光谱学研究表明,对异戊二烯的吸附强度与计算所得的预测顺序相同。催化加氢试验表明,芳环加氢的倾向也可能与异戊二烯的吸附方式和强度有关。尽管通过苯甲醚进行的3,5-二甲基取代与苯甲醚相比仅引起了部分吸附能损失和对环氢化的反应性,但CF_3取代导致了大量的吸附能损失和对芳环饱和度的反应性完全丧失。随着对取代基对芳族分子吸附的影响的研究,可以证实吸附与芳族底物饱和倾向之间的关系。

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