Adsorption Enthalpies of Hydrogen on Chemically Enhanced Carbon Nanospaces

ORAL

Abstract

Chemical functionalization of carbon nanopore spaces has been shown to significantly increase the differential enthalpy of adsorption of hydrogen (ca. 9kJ/mol). This improved surface interaction corresponds to an increased density of the adsorbed film. Functionalized carbon samples have been produced through KOH activation, deposition of decaborane, and high temperature annealing. Hydrogen sorption measurements have shown significant improvements to stored film densities and binding energies. In this talk, a systematic study of the effect that boron concentration has on the samples' pore structures, binding energies, surface excess concentrations, and volumetric storage capacities is presented.

*Work supported by DOE-EERE, Award No. DE-FG36-08GO18142

Authors

  • Andrew Gillespie

    • University of Missouri, Columbia MO
    • University of Missouri, Columbia, MO
  • Elmar Dohnke

    • Univeristy of Missouri
    • University of Missouri, Columbia MO
    • University of Missouri, Columbia, MO
  • Joseph Schaeperkoetter

    • University of Missouri, Columbia MO
  • David Stalla

    • University of Missouri, Columbia MO
  • Peter Pfeifer

    • Univeristy of Missouri
    • University of Missouri, Columbia MO
    • University of Missouri, Columbia, MO
    • University of Missouri