Introduction of Graphene/H-BN Metamaterial As Neutron Radiation Shielding by Implementing Monte Carlo Simulation

dc.contributor.authorHassanpour, Marzieh
dc.contributor.authorHassanpour, Mehdi
dc.contributor.authorFaghihi, Simin
dc.contributor.authorKhezripour, Saeedeh
dc.contributor.authorRezaie, Mohammadreza
dc.contributor.authorDehghanipour, Parvin
dc.contributor.authorFaruque, Mohammad Rashed Iqbal
dc.contributor.authorKhandaker, Mayeen Uddin
dc.date.accessioned2023-07-15T10:03:59Z
dc.date.available2023-07-15T10:03:59Z
dc.date.issued22-09-26
dc.description.abstractIn this paper, graphene/h-BN metamaterial was investigated as a new neutron radiation shielding (NRS) material by Monte Carlo N-Particle X version (MCNPX) Transport Code. The graphene/h-BN metamaterial are capable of both thermal and fast neutron moderator and neutron absorber process. The constituent phases in graphene/h-BN metamaterial are chosen to be hexagonal boron nitride (h-BN) and graphene. The introduced target was irradiated by an Am–Be neutron source with an energy spectrum of 100 keV to 15 MeV in a Monte Carlo simulation input file. The resulting current transmission rate (CTR) was investigated by the MCNPX code. Due to concrete’s widespread use as a radiation shielding material, the results of this design were also compared with concrete targets. The results show a significant increase in NRS compared to concrete. Therefore, metamaterial with constituent phase’s graphene/h-BN can be a suitable alternative to concrete for NRS. Keywords: metamaterial; neutron radiation shielding; current transmission rate; MCNPX; concrete
dc.identifier.otherhttp://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/10843
dc.identifier.urihttp://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/10843
dc.language.isoen_US
dc.publisherScopus
dc.sourceDIU Institutional Repository
dc.subjectMetamaterials
dc.subjectNeutron radiation
dc.titleIntroduction of Graphene/H-BN Metamaterial As Neutron Radiation Shielding by Implementing Monte Carlo Simulation
dc.typeArticle

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