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March 5, 2026Russian Journal of Applied Chemistry0 citations

Hydrothermally Engineered Covellite (CuS) Nanoplates with Superior Chemocatalytic and Photocatalytic Responses

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DNDeepthi S. NairVAV. M. Anandakumar

Key Points

  • The aim is to synthesize and characterize CuS nanoplates for enhanced catalytic applications in pollutant degradation.
  • Synthesis of CuS nanoplates via a hydrothermal method using copper chloride and thiourea.
  • Characterization through various techniques including XRD, HRTEM, and UV–Vis spectroscopy.
  • Evaluation of catalytic activity against methyl orange under both chemocatalytic and photocatalytic conditions.
  • Achieved 81.9% degradation of methyl orange within 12 min under chemocatalytic conditions.
  • Attained 82.1% degradation within 40 min under photocatalytic conditions.
  • Confirmed formation of hexagonal CuS with a plate-like morphology and a band gap of 1.85 eV.

Abstract

CuS (covellite) nanoplates exhibiting excellent catalytic performance were synthesized via a hydrothermal method using copper chloride and thiourea as precursors. Comprehensive characterization through XRD with Rietveld refinement, HRTEM, FESEM, EDS, FTIR, Raman, UV–Vis spectroscopy, and BET analyses confirmed the formation of hexagonal-phase CuS with a plate-like morphology, an average crystallite size of 18 nm, a mesoporous structure, and a band gap of 1.85 eV. The catalytic activity of the CuS nanoplates toward the degradation of methyl orange (MO), a common organic pollutant, demonstrated remarkable efficiency, achieving 81.9% degradation within 12 min under chemocatalytic conditions and 82.1% within 40 min under photocatalytic conditions. This study presents an eco-friendly and highly effective dual catalytic strategy for the removal of organic dye contaminants using CuS-based nanocatalysts.

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Cite This Study

Nair et al. (2026) studied this question.

synapsesocial.com/papers/69a91d21d6127c7a504bfe1ahttps://doi.org/10.1134/s1070427225603195
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