Inorganic Chemistry · 2016 · 76 citations · 49 references
Design of an efficient new catalyst that can mimic the enzymatic pathway for catalytic dehydrogenation of liquid fuels like alcohols is described in this report. The catalyst is a nickel(II) complex of 2,6-bis(phenylazo)pyridine ligand (L), which possesses the above requisite with excellent catalytic efficiencies for controlled dehydrogenation of alcohols using ligand-based redox couple. Mechanistic studies supported by density functional theory calculations revealed that the catalytic cycle involves hydrogen atom transfer via quantum mechanical tunneling with significant k<sub>H</sub>/k<sub>D</sub> isotope effect of 12.2 ± 0.1 at 300 K. A hydrogenated intermediate compound, [Ni<sup>II</sup>Cl<sub>2</sub>(H<sub>2</sub>L)], is isolated and characterized. The results are promising in the context of design of cheap and efficient earth-abundant metal catalyst for alcohol oxidation and hydrogen storage.
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Yan Zhao, Donald G. Truhlar · Theoretical Chemistry Accounts · 2007 · 29.2K citations · Full text
Aleksandr V. Marenich, Christopher J. Cramer, Donald G. Truhlar · The Journal of Physical Chemistry B · 2009 · 16.7K citations