Demirtas Merve, Ustunel Hande, Toffoli Daniele
Department of Physics, Middle East Technical University, Dumlupinar Bulvari 1, 06800 Ankara, Turkey.
Dipartimento di Scienze Chimiche e Farmaceutiche, Università degli Studi di Trieste, Via L. Giorgieri 1, I-34127 Trieste, Italy.
ACS Omega. 2017 Nov 15;2(11):7976-7984. doi: 10.1021/acsomega.7b01044. eCollection 2017 Nov 30.
Transition metal carbides are versatile materials for diverse industrial applications including catalysis, where their relatively low cost is very attractive. In this work, we present a rather extensive density functional theory study on the energetics of adsorption of a selection of atomic and molecular species on two Mo terminations of the CdI antitype phase of MoC. Moreover, the coadsorption of CO in the presence of preadsorbed metal atoms and its dissociative adsorption in the absence and presence of preadsorbed Pt and K were investigated. By using CO as a probe to understand the structural/electronic effects of the preadsorption of the metal atoms on the MoC(001) surface, we showed that K further enhances CO adsorption/activation on the surface, in contrast to the precious metals considered. Moreover, it was observed that the presence of both Pt and K stabilizes the transition state for the C-O bond dissociation, lowering the activation barrier for the dissociation of the C-O bond by about 0.3 and 0.4 eV, respectively.
过渡金属碳化物是适用于包括催化在内的多种工业应用的多功能材料,其相对较低的成本非常具有吸引力。在这项工作中,我们对一系列原子和分子物种在碳化钼CdI反型相的两种钼端面上的吸附能进行了相当广泛的密度泛函理论研究。此外,还研究了在预吸附金属原子存在下CO的共吸附以及在不存在和存在预吸附的Pt和K的情况下CO的解离吸附。通过使用CO作为探针来理解金属原子在MoC(001)表面上的预吸附的结构/电子效应,我们表明与所考虑的贵金属相比,K进一步增强了CO在表面上的吸附/活化。此外,观察到Pt和K的存在都稳定了C-O键解离的过渡态,分别使C-O键解离的活化能垒降低了约0.3和0.4 eV。