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The main resource of zirconia is the mineral zircon, found in beach sand and placer deposits. This study aims to explore methods of synthesizing zirconia and its characterization for various applications. Alkali fusion and thermal plasma dissociation are the primary techniques utilized to convert zircon into zirconia. Different zirconia phases, including monoclinic, cubic, and tetragonal, are synthesized by precisely controlling operational parameters and reagent stoichiometry. Advanced methods such as solution combustion synthesis, sol-gel synthesis, hydrothermal synthesis, co-precipitation, and solid-phase sintering are employed for creating mesoporous and nano-zirconia, which have extensive use in catalysis and electronics. Furthermore, the recent trend of biosynthesis of zirconia is highlighted due to rising environmental concerns. The synthesized zirconia undergoes comprehensive characterization through various chemical, physical, and instrumental analyses to ascertain its composition, crystal structure, size, and morphology, aiming to enhance its applicability in numerous industries.
@article{3f7c848b-6c14-4f69-912d-bf9e4e5c3ee7,
title={Zirconia Synthesis and Characterization},
author={Bincy Cyriac},
year={2026},
language={en}
}TY - JOUR TI - Zirconia Synthesis and Characterization AU - Bincy Cyriac PY - 2026 LA - en ER -
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