Characteristics of X-ray Attenuation in Electrospun Bismuth Oxide/polylactic Acid Nanofibre Mats
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The characteristics of the X-ray attenuation in electrospun nano(n)- and micro(m)-Bi2O3/polylactic acid (PLA) nanofibre mats with different Bi2O3 loadings were compared as a function of energy using mammography (i.e. tube voltages of 22-49 kV) and X-ray absorption spectroscopy (XAS) (7-20 keV). Results indicate that X-ray attenuation by electrospun n-Bi2O3/PLA nanofibre mats is distinctly higher than that of m-Bi2O3/PLA nanofibre mats at all energies investigated. In addition, with increasing filler loading (n-Bi2O3 or m-Bi2O3), the porosity of the nanofibre mats decreased, thus increasing the X-ray attenuation, except for the sample containing 38 wt% Bi2O3 (the highest loading in the present study). The latter showed higher porosity, with some beads formed, thus resulting in a sudden decrease in the X-ray attenuation.
Gamma Attenuation Coefficients of Nano Cadmium Oxide/High density Polyethylene Composites.
El-Khatib A, Abbas M, Elzaher M, Badawi M, Alabsy M, Alharshan G Sci Rep. 2019; 9(1):16012.
PMID: 31690761 PMC: 6831599. DOI: 10.1038/s41598-019-52220-7.