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Theoretical insights into the CO dimerization and trimerization on Pt nanocluster

机译:关于Pt纳米簇上CO二聚和三聚的理论见解

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摘要

CO dimerization and trimerization on an icosahedral Pt-55 cluster were investigated using density functional theory. It is found that the products of CO polymerization depend on the different active sites of the metal surface and CO coverage. C2O2 can be adsorbed on either two neighboring Pt atoms or one Pt atom, and the former case is preferred. The preference can be ascribed to the stronger interaction between the 8 sigma orbital of C2O2 and 5d orbitals of Pt in the former case, and this interaction increases the stability of C2O2. Two neighboring adsorbed CO molecules (CO*) can capture one free CO to form a ring-opening CO trimer on the Pt surface. High CO coverage can facilitate the dimerization and trimerization of CO and change the preferred adsorption site of C2O2, and highly-coordinated Pt atoms present the superior chemical activity for CO polymerization at high CO coverage. The CO dimerization by two CO* need to overcome a high energy barrier of 1.92 eV, but one CO* can capture one free CO molecule to form the C2O2 with overcoming a much lower energy barrier of 0.87 eV. The energy barrier of CO trimerization is 1.14 eV.
机译:利用密度泛函理论研究了二十面体Pt-55簇上的CO二聚和三聚。发现CO聚合的产物取决于金属表面的不同活性部位和CO覆盖率。 C 2 O 2可以被吸附在两个相邻的Pt原子或一个Pt原子上,优选前一种情况。可以将其归因于在前一种情况下C2O2的8σ轨道和Pt的5d轨道之间的较强相互作用,并且这种相互作用增加了C2O2的稳定性。两个相邻的吸附式CO分子(CO *)可以捕获一个游离的CO,在Pt表面上形成开环的CO三聚体。高CO覆盖率可促进CO的二聚和三聚,并改变C2O2的优选吸附位,高配位的Pt原子在高CO覆盖率下具有出色的化学活性。通过两个CO *进行的CO二聚需要克服1.92 eV的高能垒,但是一个CO *可以捕获一个游离的CO分子以形成C2O2,而克服了更低的0.87 eV的能垒。 CO三聚化的能垒为1.14 eV。

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