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Effect of Tin in the Bulk of Platinum-Tin Alloys for Ethane Dehydrogenation

机译:锡对铂 - 锡合金大部分乙烷脱氢的影响

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Catalytic ethane dehydrogenation was studied with density functional theory (DFT) calculations to investigate the differing role of Sn in the bulk and surface of PtSn alloys on the activity, selectivity, and stability of the catalyst. Pristine Pt(111), a surface alloy of Pt3Sn/Pt(111) and a bulk alloy of Pt3Sn(111) were compared. Binding energies of adsorbates were weakened by Sn on both alloys. With few changes for binding geometries of adsorbates, the change in binding energies was mainly attributed to the changes in the electronic interaction due to the strain effect and/or the ligand effect fromd-band theory on the alloys. Especially, the combination of ligand and strain effects on the bulk alloy made the binding energies of adsorbates generally weaker than on Pt but stronger than on the surface alloy. In the successive dehydrogenation of C(2)H(x)species, the activity was expected in the order of Pt > Pt3Sn > Pt3Sn/Pt by comparing the activation energies for ethene formation. The selectivity toward ethene was predicted using two descriptors from which the best selectivity was expected on Pt3Sn/Pt. Sn in the bulk made the gap between the barriers for ethene desorption and further dehydrogenation comparable, whereas ethene desorption was much more favorable on Pt3Sn/Pt. The preference for ethene formation from ethyl was also weakened on Pt3Sn. Therefore, despite the higher Sn composition, worse selectivity was predicted for Sn-rich bulk alloy than the surface alloy, followed by Pt.
机译:用密度官能理论(DFT)计算研究了催化乙烷脱氢,以研究SN在催化剂的活性,选择性和稳定性的体积和表面中SN的不同作用。比较PT3SN / Pt(111)的表面合金,比较PT3SN(111)的表面合金。在两个合金上,Sn削弱吸附物的结合能量。随着吸附物的结合几何形状的少量变化,结合能量的变化主要归因于由于应变效应和/或配体效应从合金上的带状效应效应的电子相互作用的变化。特别是,配体和应变效应对散装合金的组合使吸附剂的结合能量通常比在表面合金上较强而不是PT。在C(2)H(X)物种的连续脱氢中,通过比较乙烯形成的活化能量,在Pt> Pt3sn> Pt3sn / Pt的顺序中预期活性。使用两个描述符预期最佳选择性在PT3SN / PT上预期的选择性来预测对乙烯的选择性。散装中的Sn使乙烯解吸障碍与进一步脱氢相当的差距,而乙烯解吸在Pt3sn / pt上更有利。在PT3SN上也削弱了对乙基乙烯形成的偏好。因此,尽管Sn组成较高,但是对于富含Sn的体合金而言,预测了比表面合金更糟糕的选择性,其次是Pt。

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