B2O3/PbO/Na2O/MgO/Nb2O5 glasses: fabrication, physical, optical characteristics as well as photons/neutrons/beta particles attenuation capacities
暂无分享,去创建一个
[1] O. L. Tashlykov,et al. The influence of BaO on the mechanical and gamma / fast neutron shielding properties of lead phosphate glasses , 2021 .
[2] Imen Kebaili,et al. Dense and environment friendly bismuth barium telluroborate glasses for nuclear protection applications , 2021, Progress in Nuclear Energy.
[3] I. Olarinoye,et al. Synthesis, optical, structural, and radiation transmission properties of PbO/Bi2O3/B2O3/Fe2O3 glasses: An experimental and in silico study , 2021, Optical Materials.
[4] Ashok Kumar,et al. Mechanical and Gamma Ray Absorption Behavior of PbO-WO3-Na2O-MgO-B2O3 Glasses in the Low Energy Range , 2021, Materials.
[5] R. El-Mallawany,et al. Ultrasonic waves, mechanical properties and radiation shielding competence of Er3+ doped lead borate glasses: experimental and theoretical investigations , 2021, Journal of the Australian Ceramic Society.
[6] H. Gökçe,et al. An online software to simulate the shielding properties of materials for neutrons and photons: NGCal , 2021 .
[7] E. M. Ahmed,et al. Bi2O3 reinforced B2O3 + Sb2O3 + Li2O: composition, physical, linear optical characteristics, and photon attenuation capacity , 2021, Journal of Materials Science: Materials in Electronics.
[8] Ashok Kumar,et al. A comprehensive investigation on the role of PbO in the structural and radiation shielding attribute of P2O5–CaO–Na2O–K2O–PbO glass system , 2021, Journal of Materials Science: Materials in Electronics.
[9] I. Olarinoye,et al. Photon, proton, and neutron shielding capacity of optical tellurite-vanadate glass systems: Theoretical investigation , 2021, Radiation Physics and Chemistry.
[10] M. Rashad,et al. Nb2O5-Li2O-Bi2O3-B2O3 novel glassy system: evaluation of optical, mechanical, and gamma shielding parameters , 2020, Journal of Materials Science: Materials in Electronics.
[11] I. Olarinoye,et al. Environment friendly La3+ ions doped phosphate glasses/glass-ceramics for gamma radiation shielding: Their potential in nuclear safety applications , 2020 .
[12] H. Tekin,et al. Investigations on borate glasses within SBC-Bx system for gamma-ray shielding applications , 2020, Nuclear Engineering and Technology.
[13] R. El-Mallawany,et al. Optical and Electrical Properties of Lead Borate Glasses , 2019, Journal of Electronic Materials.
[14] I. Olarinoye,et al. EXABCal: A program for calculating photon exposure and energy absorption buildup factors , 2019, Heliyon.
[15] Y. Rammah,et al. Structural, optical, and electrical characterization of borate glasses doped with SnO2 , 2018, Journal of Non-Crystalline Solids.
[16] Swapna,et al. Raman, FTIR, thermal and optical properties of TeO2-Nb2O5-B2O3-V2O5 quaternary glass system , 2017 .
[17] P. Mošner,et al. Structure–property relationships in barium borophosphate glasses modified with niobium oxide , 2016 .
[18] N. M. Badiger,et al. Shielding efficiency of lead borate and nickel borate glasses for gamma rays and neutrons , 2015, Glass Physics and Chemistry.
[19] N. M. Badiger,et al. Radiation shielding competence of silicate and borate heavy metal oxide glasses: Comparative study , 2014 .
[20] M. Dussauze,et al. Influence of niobium and titanium introduction on optical and physical properties of silicate glasses , 2013 .
[21] A. E. Ersundu,et al. Characterization of B2O3 and/or WO3 containing tellurite glasses , 2012 .
[22] L. Gerward,et al. On the effective atomic number and electron density: A comprehensive set of formulas for all types of materials and energies above 1 keV , 2008 .
[23] C. Labrugère,et al. Structure and nonlinear optical properties of sodium-niobium phosphate glasses , 2008 .
[24] I. Bashter,et al. Calculation of radiation attenuation coefficients for shielding concretes , 1997 .
[25] L. Canioni,et al. Nonlinear Optical Properties of Some Niobium(V) Oxide Glasses. , 1996 .
[26] M. El-Samanoudy,et al. Optical, infrared and electrical conductivity of glasses in the TeO2-B2O3 system , 1995 .
[27] Y. Harima,et al. An historical review and current status of buildup factor calculations and applications , 1993 .
[28] N. Mott,et al. Conduction in non-crystalline systems V. Conductivity, optical absorption and photoconductivity in amorphous semiconductors , 1970 .
[29] F. Urbach. The Long-Wavelength Edge of Photographic Sensitivity and of the Electronic Absorption of Solids , 1953 .
[30] M. Sayyed,et al. Phy-X / PSD: Development of a user friendly online software for calculation of parameters relevant to radiation shielding and dosimetry , 2020 .
[31] F. C. Cassanjes,et al. High niobium oxide content in germanate glasses: Thermal, structural, and optical properties , 2018 .
[32] L. Gerward,et al. X-ray absorption in matter. Reengineering XCOM , 2001 .