Boron-neutron Capture on Activated Carbon for Hydrogen Storage

被引:0
作者
Jimmy Romanos
Matthew Beckner
Matthew Prosniewski
Tyler Rash
Mark Lee
J. David Robertson
Lucyna Firlej
Bogdan Kuchta
Peter Pfeifer
机构
[1] Lebanese American University,Department of Natural Sciences
[2] University of Missouri,Department of Physics
[3] University of Missouri,Department of Chemistry
[4] University of Missouri,MU Research Reactor (MURR)
[5] University of Montpellier - CNRS,Laboratoire Charles Coulomb, UMR5221
[6] Aix-Marseille University,Laboratoire MARIDEL, CNRS
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Scientific Reports | / 9卷
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摘要
This work investigates the effects of neutron irradiation on nitrogen and hydrogen adsorption in boron-doped activated carbon. Boron-neutron capture generates an energetic lithium nucleus, helium nucleus, and gamma photons, which can alter the surface and structure of pores in activated carbon. The defects introduced by fission tracks are modeled assuming the slit-shaped pores geometry. Sub-critical nitrogen adsorption shows that nitrogen molecules cannot probe the defects created by fission tracks. Hydrogen adsorption isotherms of irradiated samples indicate higher binding energies compared to their non-irradiated parent samples.
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