articleScienceNov 16, 2006Closed access

Reversible, Metal-Free Hydrogen Activation

University of Windsor

PubMed
Indexed incrossrefpubmed

Abstract

Although reversible covalent activation of molecular hydrogen (H2) is a common reaction at transition metal centers, it has proven elusive in compounds of the lighter elements. We report that the compound (C6H2Me3)2PH(C6F4)BH(C6F5)2 (Me, methyl), which we derived through an unusual reaction involving dimesitylphosphine substitution at a para carbon of tris(pentafluorophenyl) borane, cleanly loses H2 at temperatures above 100 degrees C. Preliminary kinetic studies reveal this process to be first order. Remarkably, the dehydrogenated product (C6H2Me3)2P(C6F4)B(C6F5)2 is stable and reacts with 1 atmosphere of H2 at 25 degrees C to reform the starting complex. Deuteration studies were also carried out to probe the…

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2,136
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38.25
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100%
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Authors

4

Topics & keywords

Keywords
  • Chemistry
  • Borane
  • Dehydrogenation
  • Hydrogen
  • Metal
  • Transition metal
  • Covalent bond
  • Carbon fibers
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