Саноатда рақамли технологиялар Volume 4 Issue 2 (2026) · pp. 81-86
COPPER PHOSPHIDE (Cu₃P): A MODERN REVIEW OF SYNTHESIS METHODS, ELECTROCHEMICAL PROPERTIES, AND ANTICORROSION APPLICATIONS
Xoliqulov, Doniyor Baxtiyorovich, Sharopova, Durdona Yo‘ldoshqizi, Холикулов, Дониёр Бахтиёрович, Шаропова, Дурдона Юлдошкизи, Kholikulov, Doniyor Bakhtiyorovich, Sharopova, Durdona Yuldoshkizi
Abstract
This review presents a comparative analysis of recent advances in the synthesis technologies, crystal structure, electrochemical properties, and anticorrosion applications of copper phosphide (Cu₃P)-based materials. Twenty peer-reviewed publications were critically evaluated to compare ionothermal, hydrothermal, mechanochemical, colloidal, vapor-phase phosphorization, and pyrometallurgical synthesis routes. The influence of synthesis strategy on phase composition, morphology, electrochemical performance, and corrosion resistance was systematically assessed. The analysis demonstrates that Cu₃P-based nanostructured materials exhibit significant potential for electrochemical energy storage, electrocatalysis, and industrial corrosion protection, making them promising multifunctional materials for sustainable engineering applications.
copper phosphideCu₃Psynthesis methodselectrochemical propertiesenergy storageelectrocatalysisanticorrosion coatingsnanostructured materialspyrometallurgical recyclingreview
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