ELECTRONIC-STRUCTURE CALCULATIONS AND DYNAMICS OF CC COUPLING ON NICKEL AND COBALT

被引:14
作者
BURGHGRAEF, H
JANSEN, APJ
VANSANTEN, RA
机构
[1] Laboratory for Inorganic Chemistry, Catalysis/Theory Group, Eindhoven University of Technology, 5600 MB Eindhoven
关键词
D O I
10.1063/1.470383
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The carbon-carbon coupling of C (carbide) and CH (methylidyne), C and CH2 (methylene), and C and CH3 (methyl) on nickel has been studied with density functional theory using 7- and 13-atom cluster models. Formation of CCH3 (ethylidyne) turned out to be the most exothermic reaction on both clusters, Experimentally, CCH3 has been identified unambiguously with a structure perpendicular to the metal surface. Thus for the C/CH3 coupling forming CCH3, we have determined the structure and potential energy surface in the coadsorbed state, transition state, and CC-formed state. The transition state is explicitly determined on the 7-atom cluster and the 13-atom cluster of both nickel and cobalt. We find transition state barriers of 57 kJ/mol for the Ni-7 cluster, 55 kJ/mol for the Co-7 cluster 84 kJ/mol for the Ni-13 cluster, and 47 kJ/mol for the Co-13 cluster. The overall reaction energies are -215, -184, -66, and -89 kJ/mol, respectively. Analysis of the TS shows a dominant contribution of the CC bond to the reaction coordinate. Cluster size effects play a role in all studied CC coupling reactions. (C) 1995 American Institute of Physics.
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页码:6562 / 6570
页数:9
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