SYNTHESIS AND PHYSICOCHEMICAL PROPERTIES OF g-C3N4/CoNi2S4 HETEROSTRUCTURED NANOMATERIALS PROVIDING EFFICIENT CONVERSION OF CO2 UNDER THE INFLUENCE OF SUNLIGHT

A. Samiev, U.N. Nizamov, Sh.E. Mirzaev, O.N. Ruzimuradov, A. Nasimov

Samarqand davlat universiteti ilmiy tadqiqotlar axborotnomasi · 2026-yil

Annotatsiya

In this study, a g-CN-VN/CoNi2S4 nanocomposite material with a layer-by-layer architecture was successfully synthesized to improve the photocatalytic conversion efficiency of CO2. The material consists of a nitrogen-rich g-C₃N₄ matrix and CoNi₂S₄ nanoparticles, which are aimed at ensuring effective charge carrier separation through interface engineering. It is known that the use of cocatalysts is a widely used strategy in photocatalytic systems, but weak interface bonds can lead to rapid recombination of electron-hole pairs. These strong interface bonds accelerate electron migration and increase the efficiency of charge carrier separation. As a result, the synthesized nanocomposite exhibited high activity and stability in the photocatalytic reduction of CO2. The obtained results indicate that the creation of heterostructured photocatalysts based on interface engineering is a promising approach for converting CO2 into useful products using solar energy.

Maqola ma’lumotlari
MualliflarA. Samiev, U.N. Nizamov, Sh.E. Mirzaev, O.N. Ruzimuradov, A. Nasimov
JurnalSamarqand davlat universiteti ilmiy tadqiqotlar axborotnomasi
Nashr sanasi2026-01-01
Jild1
Son2
Betlar82-87
DOI10.59251/2181-3973.2025.v1.138.1.3826

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