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Theoretical study on the influence of a secondary metal on the Cu(110) surface in the presence of H2O for methanol decomposition

机译:二级金属对甲醇分解存在下铜(110)表面对Cu(110)表面影响的理论研究

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Density functional theory calculations with the continuum solvation slab model are performed to investigate the effect of metal dopants on the Cu(110) surface in the presence of H _(2) O for the methanol decomposition. The sequential dehydrogenation of methanol (CH _(3) OH → CH _(3) O → CH _(2) O → CHO → CO) is studied in the present work. The results show that the introduction of different metals (Pt, Pd, Ni, Mn) on the H _(2) O/Cu(110) surface notably influence the adsorption configurations and adsorption energies of all adsorbates, and remarkably affect the reaction energies and activation energies of the elementary steps. The Pt, Pd and Ni doped H _(2) O/Cu(110) surfaces are able to promote hydrogen production from methanol decomposition, but Mn doped H _(2) O/Cu(110) surfaces are unfavorable for the reaction. The activity of methanol decomposition decreases as follows: Pd–H _(2) O/Cu(110) > Pt–H _(2) O/Cu(110) > Ni–H _(2) O/Cu(110) > H _(2) O/Cu(110) > Mn–H _(2) O/Cu(110). Finally, the Br?nsted–Evans–Polanyi plot for the main methanol dissociation steps on the metal doped and un-doped H _(2) O/Cu(110) surfaces are identified, and a linear relationship between the reaction energies and transition state energies is obtained.
机译:利用连续溶解板模型进行密度函数理论计算,以研究H _(2)O的Cu(110)表面对甲醇分解的含量掺杂剂对Cu(110)表面的影响。在本作工作中研究了甲醇的顺序脱氢(CH _(3)OH→CH _(3)O→CH_(2)O→CHO→CO)。结果表明,在H _(2)O / Cu(110)表面上引入不同的金属(Pt,Pd,Ni,Mn),显着影响所有吸附物的吸附配置和吸附能量,并且显着影响反应能量和基本步骤的激活能量。 Pt,Pd和Ni掺杂H _(2)O / Cu(110)表面能够从甲醇分解中促进氢气,但Mn掺杂H _(2)O / Cu(110)表面对于反应不利。甲醇分解的活性降低如下:Pd-H _(2)O / Cu(110)> Pt-H _(2)O / Cu(110)> Ni-H _(2)O / Cu(110) > H _(2)O / Cu(110)> Mn-H _(2)O / Cu(110)。最后,鉴定了金属掺杂和未掺杂的H _(2)O / Cu(110)表面上的主要甲醇解离步骤的Nsted-evans-polanyi图,以及反应能量和过渡之间的线性关系获得状态能量。

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