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- W4363679427 abstract "The research's essential aim is to use Phy-X/PSD software to analyze photon attenuation properties of Cu2-II-Sn-VI4 (II=Mn, Fe; VI =S, Se, Te) quaternary semiconducting compounds at photons energies between 15 keV and 15 MeV. The parameters of photon interaction, including MAC, LAC, HVL, TVL, MFP, ACS, ECS, Zf, Nf, and Cf were determined in the chosen range of energies. The software was performed at the selected photon energies to compute each sample's R, Zeq, and build-up factors. The HVL and MFP values of the samples were compared to those mentioned in the previous studies for different concretes and commercial glasses. The HVL and MFP values for Cu2FeSnSe4, Cu2FeSnTe4, Cu2MnSnSe4, and Cu2MnSnTe4, samples are lower than those of the compared concrete types commonly utilized for protection. According to data acquired from the Phy-X/PSD software, Cu2FeSnTe4 is the optimum composite for gamma-ray attenuation among the studied samples. Also, in comparison to the other examined samples, the Cu2FeSnTe4 sample showed the greatest FNRCS (fast neutron removal cross-section) value (0.117), indicating good neutron attenuation characteristics." @default.
- W4363679427 created "2023-04-11" @default.
- W4363679427 creator A5038715162 @default.
- W4363679427 date "2023-08-01" @default.
- W4363679427 modified "2023-09-25" @default.
- W4363679427 title "Ionizing radiation attenuation features of Cu2-II-Sn-VI4 (II=Mn, Fe; VI = S, Se, Te) quaternary semiconducting compounds" @default.
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- W4363679427 doi "https://doi.org/10.1016/j.mssp.2023.107480" @default.
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