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A density functional theory study of formaldehyde adsorption on ceria

机译:甲醛在二氧化铈上吸附的密度泛函理论研究

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Molecular adsorption of formaldehyde on the stoichiometric CeO_2(111) and CeO_2(110) surfaces was studied using periodic density functional theory. Two adsorption modes (strong chemisorbed and weak physisorbed) were identified on both surfaces. This is consistent with recent experimental observations. On the (111) surface, formaldehyde strongly chemisorbs with an adsorption energy of 0.86 eV to form a dioxymethylene-like structure, in which a surface O lifts from the surface to bind with the C of formaldehyde. A weak physisorbed state with adsorption energy of 0.28 eV was found with the O of formaldehyde interacting with a surface Ce. On the (110) surface, dioxy- methyelene formation was also observed, with an adsorption energy of 1.31 eV. The weakly adsorbed state of formaldehyde on the (110) surface was energetically comparable to the weak adsorption state on the (111) surface. Analysis of the local density of states and charge density differences after adsorption shows that strong covalent bonding occurs between the C of formaldehyde and surface O when dioxymethylene forms. Calculated vibrational frequencies also confirm dioxymethylene formation. Our results show that as the coverage increases, the adsorption of formaldehyde on the (111) surface becomes weak, but is nearly unaffected on the (110) surface.
机译:利用周期密度泛函理论研究了甲醛在化学计量的CeO_2(111)和CeO_2(110)表面上的分子吸附。在两个表面上都确定了两种吸附模式(强化学吸附和弱物理吸附)。这与最近的实验观察结果一致。在(111)表面上,甲醛以0.86 eV的吸附能强烈地化学吸附,形成类似二氧亚甲基的结构,其中表面O从表面升起,与甲醛C结合。发现甲醛的O与表面Ce相互作用时,具有弱的物理吸附态,吸附能为0.28eV。在(110)表面上,还观察到了二氧间苯二甲生成,吸附能为1.31 eV。在(110)表面上甲醛的弱吸附状态在能量上与(111)表面上的弱吸附状态相当。对吸附后的状态局部密度和电荷密度差异的分析表明,当形成二甲醛时,甲醛的C与表面O之间会发生强共价键合。计算出的振动频率也证实了二甲醛的形成。我们的结果表明,随着覆盖率的增加,甲醛在(111)表面上的吸附变弱,但在(110)表面上几乎不受影响。

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