Mechanistic aspects of the rhodium-catalyzed hydrogenation of CO2 to formic acid - A theoretical and kinetic study

被引:173
作者
Hutschka, F
Dedieu, A
Eichberger, M
Fornika, R
Leitner, W
机构
[1] MAX PLANCK INST KOHLENFORSCH, D-45470 MULHEIM, GERMANY
[2] UNIV STRASBOURG 1, LAB CHIM QUANT, UPR 139 CNRS, F-67000 STRASBOURG, FRANCE
[3] UNIV JENA, MAX PLANCK GESELL, ARBEITSGRP CO2 CHEM, D-74430 JENA, GERMANY
关键词
D O I
10.1021/ja961579x
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The mechanism of the rhodium-catalyzed hydrogenation of CO2 to formic acid was investigated by initial rate measurements using the complex [(dppp)Rh(hfacac)] (A) (dppp = Ph2P(CH2)(3)PPh2, hfacac = hexafluoroacetyl-acetonate) as a catalyst precursor in DMSO/NEt3 and by ab initio calculations using cis-[(H3P)(2)Rh] as a model fragment for the catalytically active site. The kinetic data are consistent with a mechanism that involves rate limiting product formation by liberation of formic acid from an intermediate that is formed via two reversible reactions of the actual catalytically active species first with CO2 and then with H-2. The calculations provide for the first time a theoretical analysis of the full catalytic cycle of CO2 hydrogenation. They give detailed insight into the structure of possible intermediates and their transformations during the individual steps. The results suggest sigma-bond metathesis as an alternative low energy pathway to a classical oxidative addition/reductive elimination sequence for the reaction of the formate intermediate with dihydrogen.
引用
收藏
页码:4432 / 4443
页数:12
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