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Browsing SoAS - Scholarly Publications by Author "Wexler, C."

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Browsing SoAS - Scholarly Publications by Author "Wexler, C."

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  • Beckner, M.; Romanos, J.; Stalla, D.; Dohnke, E.; Singh, A.; LEe, M.; Suppes, G.; Hawthorne, M.F.; Yu, P.; Wexler, C.; Pfeifer, P. (American Physical Society, 2019-10-14)
    There is significant interest in the properties of boron-doped activated carbons for their potential to improve hydrogen storage. Boron-doped activated carbons have been produced using a novel process involving the pyrolysis ...
  • Dohnke, E.; Beckner, M.; Romanos, J.; Olsen, R.; Wexler, C.; Pfeifer, P. (2019-10-14)
    Activated carbons made from corn cob show promise as materials for high-capacity hydrogen storage. As part of our characterization of these materials, we are interested in learning how different production methods affect ...
  • Soo, Y.C.; Beckner, M.; Romanos, J.; Wexler, C.; Pfeifer, P.; Buckley, P.; Clement, J. (American Physical Society, 2019-10-11)
    In this talk we will present an overview of our new Hydrogen Test Fixture (HTF) constructed by the Midwest Research Institute for The Alliance for Collaborative Research in Alternative Fuel Technology to test activated ...
  • Romanos, J.; Beckner, M.; Stalla, D.; Tekeei, A.; Suppes, G.; Jalisagi, S.; Lee, M.; Hawthorne, F.; Robertson, J.D.; Firlej, L.; Kuchta, B.; Wexler, C.; Yu, P.; Pfeifer, P. (2019-10-10)
    We report Fourier transform infrared spectroscopy (FTIR) studies of boron-doped activated carbons. The functional groups for hydrogen adsorption in these materials, the boron-related chemical bonds, are studied by comparing ...
  • Beckner, M.; Oslen, R.; Romanos, J.; Burress, J.; Dohnke, E.; Carter, S.; Casteel, G.; Wexler, C.; Pfeifer, P. (American Physical Society, 2019-10-14)
    Activated carbons made from corn cob show promise as materials for high-capacity hydrogen storage. As part of our characterization of these materials, we are interested in learning how different production methods affect ...
  • Beckner, M.; Romanos, J.; Dohnke, E.; Singh, A.; Schaeperkoetter, J.; Stalla, D.; Burress, J.; Jalisatgi, S.; Suppes, G.; Hawthorne, M.E.; Yu, P.; Wexler, C. (American Physical Society, 2019-10-11)
    There is significant interest in the properties of boron-doped activated carbons for their potential to improve hydrogen storage. ootnotetextMultiply Surface-Functionalized Nanoporous Carbon for Vehicular Hydrogen Storage, ...
  • Romanos, J.; Beckner, M.; Rash, T.; Firlej, L.; Kuchta, B.; Yu, P.; Suppes, G.; Wexler, C.; Pfeifer, P. (2019-10-11)
    This paper demonstrates that nanospace engineering of KOH activated carbon is possible by controlling the degree of carbon consumption and metallic potassium intercalation into the carbon lattice during the activation ...
  • Wexler, C.; Beckner, M.; Romanos, J.; Burress, J.; Kraus, J.; Oslen, R.; Dohnke, E.; Carter, S.; Casteel, G.; Kuchta, B.; Firle, L.; Leimkuehler, E.; Tekeei, A.; Suppes, G.; Pfeifer, P. (American Physical Society, 2019-10-14)
    Carbons can be engineered to achieve exceptional storage capacities: the ALL-CRAFT (www.all-craft.missouri.edu) nanoporous carbon achieves gravimetric excess adsorption of 0.073 kg H2/kg C, gravimetric storage capacity of ...

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