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Metal‐Free Dihydrogen Oxidation by a Borenium Cation: A Combined Electrochemical/Frustrated Lewis Pair Approach
Authors:Elliot J. Lawrence  Thomas J. Herrington  Dr. Andrew E. Ashley  Dr. Gregory G. Wildgoose
Affiliation:1. School of Chemistry, University of East Anglia, Norwich Research Park, Norwich, NR4 7TJ (UK) http://wildgooseresearch.com;2. Department of Chemistry, Imperial College, South Kensington, London, SW7 2AZ (UK)
Abstract:In order to use H2 as a clean source of electricity, prohibitively rare and expensive precious metal electrocatalysts, such as Pt, are often used to overcome the large oxidative voltage required to convert H2 into 2 H+ and 2 e?. Herein, we report a metal‐free approach to catalyze the oxidation of H2 by combining the ability of frustrated Lewis pairs (FLPs) to heterolytically cleave H2 with the in situ electrochemical oxidation of the resulting borohydride. The use of the NHC‐stabilized borenium cation [(IiPr2)(BC8H14)]+ (IiPr2=C3H2(NiPr)2, NHC=N‐heterocyclic carbene) as the Lewis acidic component of the FLP is shown to decrease the voltage required for H2 oxidation by 910 mV at inexpensive carbon electrodes, a significant energy saving equivalent to 175.6 kJ mol?1. The NHC–borenium Lewis acid also offers improved catalyst recyclability and chemical stability compared to B(C6F5)3, the paradigm Lewis acid originally used to pioneer our combined electrochemical/frustrated Lewis pair approach.
Keywords:borenium cations  electrocatalysis  frustrated Lewis pairs  hydrogen  oxidation
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