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July 21, 2026Scientific Reports0 citationsOpen Access

Synthesis of Ag/TiO2 photocatalysts via direct photodeposition of silver from industrial electroplating wastewater

STSoontorn TuntithavornwatAOAinthuon OnkanPNPoochit Nonejuie

Key Points

  • This research aims to develop a method for synthesizing Ag/TiO2 photocatalysts using silver from electroplating wastewater. It explores their efficacy in antibacterial applications.
  • Used industrial silver-containing wastewater directly as the Ag source for photodeposition onto TiO2.
  • Characterized the synthesized photocatalysts through structural analyses and measured size and composition of silver nanoparticles.
  • Conducted antibacterial activity tests under UV irradiation on Staphylococcus aureus.
  • Achieved a 99.9% reduction in Staphylococcus aureus viability using all photocatalysts at 1 mg/mL concentration.
  • Identified Ag/TiO2-3 as the most effective composite with approximately 0.1 mg/mL achieving optimal antibacterial activity.
  • Confirmed an increase in silver nanoparticle sizes from 5.29 nm to 13.19 nm and a bandgap reduction from 3.14 eV to 2.96 eV.

Abstract

Silver-containing wastewater from cyanide-based electroplating processes represents both an environmental burden and an underutilized resource. Conventional silver recovery methods often generate intermediate products that require further refining before reuse. This study demonstrates a proof-of-concept waste-to-material strategy in which real silver-containing electroplating wastewater was used directly as the Ag source for photodeposition onto TiO 2 , without adding high-purity silver precursors. Structural analyses confirmed the formation of Ag-modified TiO 2 with increase Ag nanoparticle sizes from 5.29 ± 3.49 to 13.19 ± 5.60 nm, corresponding to Ag contents of 0.82, 3.54, and 8.69 wt% for Ag/TiO 2 -1, Ag/TiO 2 -2, and Ag/TiO 2 -3, respectively. Ag incorporation also reduced the apparent bandgap from 3.14 eV for pristine TiO 2 to 2.96 eV for Ag/TiO 2 -3. Under UV irradiation, all photocatalysts achieved a substantial decrease in Staphylococcus aureus viability (99.9%) at 1 mg/mL, while Ag/TiO 2 -3 showed the strongest antibacterial activity at the lowest tested concentration of 0.1 mg/mL. Consequently, Ag/TiO₂-3 was identified as the optimal composite and chosen for further mechanistic studies. These studies indicated a non-lytic killing pathway driven by enhanced intracellular reactive oxygen species generation and membrane permeabilization. This work demonstrates the feasibility of converting silver-containing industrial wastewater into functional Ag/TiO 2 photocatalysts and support broader strategies for environmental remediation.

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Cite This Study

Tuntithavornwat et al. (2026) studied this question.

synapsesocial.com/papers/6a5f0b6586a4235cc161921ehttps://doi.org/10.1038/s41598-026-60689-2
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