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A mechanistic study and computational prediction of iron, cobalt and manganese cyclopentadienone complexes for hydrogenation of carbon dioxide

29

Citations

38

References

2016

Year

Abstract

A series of cobalt and manganese cyclopentadienone complexes are proposed and examined computationally as promising catalysts for hydrogenation of CO<sub>2</sub> to formic acid with total free energies as low as 20.0 kcal mol<sup>-1</sup> in aqueous solution. Density functional theory study of the newly designed cobalt and manganese complexes and experimentally reported iron cyclopentadienone complexes reveals a stepwise hydride transfer mechanism with a water or a methanol molecule assisted proton transfer for the cleavage of H<sub>2</sub> as the rate-determining step.

References

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