The potential of bi2–xZrxO3+x/2@ZrO2 (BZO) as a heavyweight radiation shielding material: Fabrication and characterization using a hydrothermal technique directly from zircon mineral

Author:

Mahmoud K.A.,Marashdeh Mohammad W.,Al-Hmoud Mohannad,Aljaafreh Mamduh J.,Alanazi Sitah,Alhindawy Islam G.

Funder

Deanship of Scientific Research, Imam Mohammed Ibn Saud Islamic University

Al-Imam Muhammad Ibn Saud Islamic University

Publisher

Elsevier BV

Reference59 articles.

1. Recent trends in advanced radiation shielding concrete for construction of facilities: materials and properties;Abdullah;Polymers,2022

2. Improvement of corrosion and sliding wear behavior of tin-bronze alloys reinforced by ZrO2 particles prepared via powder technology;Abed;Int. J. Mech. Eng.,2022

3. Elucidating the influences of strontium (II) oxides in TeO2–B2O3–BaO: fabrication, Raman spectroscopy, and γ-ray protection properties for the novel high-density glasses;Abouhaswa;Prog. Nucl. Energy,2023

4. Stabilisation and characterisation of a new βIII­phase in Zr­doped Bi2O3

5. Effect of Fe2O3 doping on structural, FTIR and radiation shielding characteristics of aluminium-lead-borate glasses. Progress in Nuclear Energy;Albarzan,2021

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