An important role of Ba2+, Sr2+, Mg2+, and Zn2+ in the radiation attenuation performance of CFCBPC bioactive glasses

M.S. Al-Buriahi1, Z.A. Alrowaili2, Canel Eke3, Sultan Alomairy4, B. Alshahrani5, Imen Bejaoui6, Chahkrit Sriwunkum7
1Sakarya University
2Department of Physics, College of Science, Jouf University, Sakaka, Saudi Arabia
3Faculty of Education, Department of Mathematics and Science Education, Akdeniz University, Antalya, Turkey
4Department of Physics, College of Science, Taif University, Taif, Saudi Arabia
5Department of Physics, College of Sciences, King Khalid University, Abha, Saudi Arabia
6Department of Chemistry, Sciences and Art College, King Khalid University, Abha, Saudi Arabia
7Department of Physics, Ubon Ratchathani University, Ubon Ratchathani, Thailand

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Abbasi, Z., Bahrololoom, M.E., Shariat, M.H., Bagheri, R.: Bioactive glasses in dentistry: a review. J. Dent. Biomater. 2(1), 1–9 (2015)

Rahaman, M.N., Xiao, W., Fu, Q., Huang, W.: Review - bioactive glass implants for potential application in structural bone repair. Biomed. Glasses 3, 56–66 (2017). https://doi.org/10.1515/bglass-2017-0005

Oliver, J.N., Su, Y., Lu, X., Kuo, P., Du, J., Zhu, D.: Bioactive glass coatings on metallic implants for biomedical applications. Bioact. Mater. 4, 261–270 (2019). https://doi.org/10.1016/j.bioactmat.2019.09.002

Huang, C.L., Fang, W., Huang, B.R., Wang, Y.H., Dong, G.C., Lee, T.M.: Bioactive glass as a nanoporous drug delivery system for teicoplanin. Appl. Sci. 10, 2595 (2020). https://doi.org/10.3390/app10072595

Naseri, S., Lepry, W.C., Nazhat, S.N.: Bioactive glasses in wound healing: hope or hype? J. Mater. Chem. B. 5(31 (2017)), 6167–6174 (2017). https://doi.org/10.1039/c7tb01221g

Zheng, K., Boccaccini, A.R.: Sol-gel processing of bioactive glass nanoparticles: a review. Adv. Colloid Interface Sci. 249, 363–373 (2017). https://doi.org/10.1016/j.cis.2017.03.008

Zahid, S., Shah, A.T., Jamal, A., Chaudhry, A.A., Khan, A.S., Khan, A.F., Muhammed, N., Rehman, I.U. Biological behavior of bioactive glasses and their composites. RSC Adv. 74(2016). https://doi.org/10.1039/C6RA07819B .

Atkinson, I.: Effect of Sr, Zn, and Ce substitution on the properties of bioactive glasses. Am. J. Biomed. Sci. Res. 10(1), 26–29 (2020). https://doi.org/10.34297/AJBSR.2020.10.001467

Hench, L.L., Splinter, R.J., Allen, W.C., Greenlee, T.K.: Bonding mechanisms at the interface of ceramic prosthetic materials. J. Biomed. Mater. Res. 2(1), 117–141 (1971). https://doi.org/10.1002/jbm.820050611

Hech, L.L., Roki, N., Fenn, M.B.: Bioactive glasses: importance of structure and properties in bone regeneration. J. Mol. Struct. 1073, 24–30 (2014). https://doi.org/10.1016/j.molstruc.2014.03.066

Kim, C.Y., Cleark, A.E., Hench, L.L.: Early stages of calcium-phosphate layer formation in bioglasses. J. Non-Cryst. Solids 113, 195–202 (1989). https://doi.org/10.1016/0022-3093(89)90011-2

Beckham, C.A., Greenlee, T.K., Crebo, A.R.: Bone formation at a ceramic implant interface. Calcif. Tissue. Res. 8(1), 165–171 (1971). https://doi.org/10.1007/bf02010133

Ferraris, S., Yamaguchi, S., Barbari, N., Cazzola, M., Cristallini, C., Miola, M., Verne, E., Spriano, S.: Bioactive materials: In vitro investigation of different mechanisms of hydroxyapatite precipitation. Acta. Biomater. 102, 468–480 (2020). https://doi.org/10.1016/j.actbio.2019.11.024

Soltani-Dehnavi, S., Mehdikhani-Nahrkhalaji, M., Rafienia, M., Doostmohammadi, A.: Copper-doped and copper-free bioactive glass nanopowders cytotoxicity and antibacterial activity assessment. Sci. Iran. 24(3), 1706–1716 (2017). https://doi.org/10.24200/sci.2017.4146

Modglin, V.C., Brown, R.F., Jung, S.B., Day, D.E.: Cytotoxicity assessment of modified bioactive glasses with MLO-A5 osteogenic cells in vitro. J Mater Sci: Mater Med. 24(5), 1191–1199 (2013). https://doi.org/10.1007/s10856-013-4875-8

Shaaban, Kh S., Imed Boukhris, Imen Kebaili, and M. S. Al-Buriahi. “Spectroscopic and attenuation shielding studies on B 2 O 3-SiO 2-LiF-ZnO-TiO 2 glasses.” Silicon (2021): 1–10.

Dobradi, A., Enisz-Bodogh, M., Kovacs, K., Korim, T.: Bio-degradation of bioactive glass ceramics containing natural calcium phosphates. Ceram. Int. 42(2), 3706 (2016). https://doi.org/10.1016/j.ceramint.2015.10.159

Abdelghany, A.M.: Novel method for early investigation of bioactivity in different borate bio-glasses, Spectrochim. Acta Part A Mol. Biomol. Spectrosc. 100, 120e126 (2013). https://doi.org/10.1016/j.saa.2012.02.051

Ning, J., Yao, A., Wang, D., Huang, W., Fu, H., Liu, X., Jiang, X., Zhang, X.: Synthesis and in vitro bioactivity of a borate-based bioglass. Mater. Lett. 61(30), 5223–5226 (2007). https://doi.org/10.1016/j.matlet.2007.04.089

Mancuso, E., Bretcanu, O., Marshall, M., Dalgarno, K.W.: Sensitivity of novel silicate and borate-based glass structures on in vitro bioactivity and degradation behaviour. Ceram. Int. 43(15), 12651–12657 (2017). https://doi.org/10.1016/j.ceramint.2017.06.146

Al-Harbi, N., Al-Hadeethi, Y., Bakry, A.S.: Mechanical and radiation shielding features of bioactive glasses: SiO2-Na2O-CaO-P2O5-B2O3 for utilization in dental applications. J. Non. Cryst. Solids 552(2021), 120489 (2021). https://doi.org/10.1016/j.jnoncrysol.2020.120489

Al-Hadeethi, Y., Al-Buriahi, M.S., Sayyed, M.I.: Bioactive glasses and the impact of Si3N4 doping on the photon attenuation up to radiotherapy energies. Ceram. Int. 46, 5306–5314 (2020). https://doi.org/10.1016/j.ceramint.2019.10.281

Al-Hadeethi, Y., Sayyed, M.I., Al-Buriahi, M.S.: Bioactive glasses doped with TiO2 and their potential use in radiation shielding applications. Ceram. Int. 46, 14721–14732 (2020). https://doi.org/10.1016/j.ceramint.2020.02.276

Tamam, Nissren, Z. A. Alrowaili, Zainab Mufarreh Elqahtani, H. H. Somaily, Norah Alwadai, Chahkrit Sriwunkum, I. O. Olarinoye, and M. S. Al-Buriahi. Significant influence of Cu content on the radiation shielding properties of Ge-Se-Te bulk glasses. Radiation Physics and Chemistry 109981 (2022). https://doi.org/10.1016/j.radphyschem.2022.109981

Boukhris, I., Kebaili, I., Al-Buriahi, M.S., Alalawi, A., Abouhaswa, A.S., Tonguc, B.: Photon and electron attenuation parameters of phosphate and borate bioactive glasses by using Geant4 simulations. Ceramç Int. 46, 24435–24442 (2020). https://doi.org/10.1016/j.ceramint.2020.06.226

Alalawi, A., Al-Buriahi, M.S., Rammah, Y.S.: Radiation shielding properties of PNCKM bioactive glasses at nuclear medicine energies. Ceram. Int. 46, 15027–15033 (2020). https://doi.org/10.1016/j.ceramint.2020.03.033

Sobhanachalam, P., Ravi Kumar, V., Raghavaiah, B.V., Kumar, V.R., SahayaBaskaran, G., Gandhi, Y., Syam Prasad, P., Veeraiah, N.: In vitro investigations on CoO doped CaF2CaOB2O3P2O5− MO bioactive glasses by means of spectroscopic studies. Opt. Mater. 73, 628–637 (2017)

Ferrari, Alfredo, Johannes Ranft, Paola R. Sala, and A. Fassò. FLUKA: A multi-particle transport code (Program version 2005). No. CERN-2005–10. Cern, 2005.

Al-Buriahi, M.S., Gaikwad, D.K., Hegazy, H.H., Sriwunkum, C., Neffati, R.: Fe-based alloys and their shielding properties against directly and indirectly ionizing radiation by using FLUKA simulations. Phys. Scr. 96(4), 045303 (2021)

Olarinoye, I.O., Alomairy, S., Sriwunkum, C., Al-Buriahi, M.S.: Effect of Ag2O/V2O5 substitution on the radiation shielding ability of tellurite glass system via XCOM approach and FLUKA simulations. Phys. Scr. 96(6), 065308 (2021)

Al-Buriahi, M.S., Somaily, H.H., Alalawi, A., Alraddadi, S.: Polarizability, optical basicity, and photon attenuation properties of Ag 2 O-MoO 3–V 2 O 5–TeO 2 glasses: the role of silver oxide. J. Inorg. Organomet. Polym. Mater. 31(3), 1047–1056 (2021)

Berger, Martin J., and J. H. Hubbell. XCOM: Photon cross sections on a personal computer. No. NBSIR-87–3597. National Bureau of Standards, Washington, DC (USA). Center for Radiation Research, 1987.

Alzahrani, Jamila S., Alrowaili, Z.A., Saleh, H.H., Hammoud, Al., Alomairy, S., Sriwunkum, C., Al-Buriahi, M.S.: Synthesis, physical and nuclear shielding properties of novel Pb–Al alloys. Prog. Nucl. Energy 142, 103992 (2021)

Alshahrani, B., Canel Eke, Z. A. Alrowaili, Ateyyah M. Al-Baradi, H. I. Alsaeedy, Chalermpon Mutuwong, B. T. Tonguc, and M. S. Al-Buriahi. “Gamma, neutron, and charged-particles shielding properties of tellurite glass system containing Sb2O3 and V2O5.” Journal of Materials Science: Materials in Electronics (2021): 1–12.

Alothman, M.A., Al-Baradi, A.M., Ahmed, S.B., Kurtulus, R., Olarinoye, I.O., Kavas, T., Al-Buriahi, M.S.: Physical, optical, and ionizing radiation shielding parameters of Al (PO3) 3-doped PbO–Bi2O3–B2O3 glass system. J. Mater. Sci. Mater. Electron. 32(23), 27744–27761 (2021)

Tonguc, B.T., Arslan, H., Al-Buriahi, M.S.: Studies on mass attenuation coefficients, effective atomic numbers and electron densities for some biomolecules. Radiat. Phys. Chem. 153, 86–91 (2018)

Al-Buriahi, M. S., Canel Eke, Z. A. Alrowaili, Ateyyah M. Al-Baradi, Imen Kebaili, and B. T. Tonguc. “Optical properties and radiation shielding performance of tellurite glasses containing Li2O and MoO3.” Optik (2021): 168257.

Al-Buriahi, M.S., Olarinoye, I.O., Alshahrani, B., Al-Baradi, A.M., Mutuwong, C., Arslan, H.: Optical and gamma-ray absorption features of newly developed P2O5− Ce2O3− La2O3 glass system. Appl. Phys. A. 127(11), 1–9 (2021)

Alzahrani, J.S., Alrowaili, Z.A., Olarinoye, I.O., Alothman, M.A., Al-Baradi, A.M., Kebaili, I., Al-Buriahi, M.S.: Nuclear shielding properties and buildup factors of Cr-based ferroalloys. Prog. Nucl. Energy 141, 103956 (2021)

Alzahrani, J.S., Kavas, T., Kurtulus, R., Al-Buriahi, M.S.: Evaluations of physical and mechanical properties, and photon attenuation characteristics on lithium-germanate glass containing ZnO. Optik. 248, 168078 (2021)

Alothman, M.A., Kurtulus, R., Olarinoye, I.O., Kavas, T., Mutuwong, C., Al-Buriahi, M.S.: Optical, elastic, and radiation shielding properties of Bi2O3-PbO-B2O3 glass system: a role of SnO2 addition. Optik. 248, 168047 (2021)

Al-Buriahi, M.S., Bakhsh, E.M., Tonguc, B., Khan, S.B.: Mechanical and radiation shielding properties of tellurite glasses doped with ZnO and NiO. Ceram. Int. 46(11), 19078–19083 (2020)

Al-Buriahi, M.S., Singh, V.P., Alalawi, A., Sriwunkum, C., Tonguc, B.T.: Mechanical features and radiation shielding properties of TeO2–Ag2O-WO3 glasses. Ceram. Int. 46(10), 15464–15472 (2020)