Synergistic effects of Ag/g-C3N4-incorporated bi-metallic ZnTi-LDH in CO2 photoreduction to hydrocarbons

  • Samuel Prabagar, Jijoe Samuel; 
  • Ashajyothi, C.; 
  • Tripathi, Arpan Kumar; 
  • Makgwane, Peter Ramashadi; 
  • Rasool, Akhtar; 
  • ... Lim, Dongkwon; 
  • 외 3명
Citations

SCOPUS

4

초록

Coupling solar energy with photocatalytic processes offers a viable route to address environmental challenges such as pollution remediation and CO<inf>2</inf> reduction. The strategic construction of heterojunctions enhances charge separation efficiency, thereby improving photocatalytic performance. Herein, a bi-metallic ZnTi-LDH/Ag/g-C<inf>3</inf>N<inf>4</inf> heterojunction photocatalyst was rationally engineered to facilitate the photoreduction of CO<inf>2</inf> into value-added hydrocarbon compounds, offering potential utility across energy, chemical, and environmental sectors. The distinctive peaks in the XRD patterns, along with the elemental interactions analyzed through XPS and surface atomic ratio calculations based on the XPS results, further established the successful formation of ZnTi-LDH-Ag/gC<inf>3</inf>N<inf>4</inf>. The composite exhibited an absorbance range within the spectrum window of 400-500 nm with a narrow bandgap of 2.13 eV, indicating its potential for photocatalysis in the visible light region. PL spectra suggested that the interface has the potential to suppress electron-hole recombination compared to pristine ZnTi-LDH and Ag/gC<inf>3</inf>N<inf>4</inf>. The photoreduction studies of CO<inf>2</inf> using this interface composite demonstrated the successful generation of 36.66 mmol L−1 of CH<inf>3</inf>OH and 10.86 mmol L−1 of HCOOH. Notably, the selectivity of CH<inf>3</inf>OH was 91.01% compared to 8.99% of HCOOH. The stability and recyclability test revealed consistent generation of CH<inf>3</inf>OH and HCOOH over three cyclic runs without alteration in the interface structures. The engineered photocatalyst composite demonstrates strong activity for visible-light-driven CO<inf>2</inf> conversion into valuable hydrocarbons, underscoring solar energy as a viable route for both carbon mitigation and sustainable resource synthesis. © 2025 Elsevier B.V., All rights reserved.

키워드

Carbon Dioxide; Hydrocarbons; Photocatalysts; Photocatalytic Activity; Reduction; Remediation; Silver Compounds; Solar Energy; Sustainable Development; Charge-separation; Co 2 Reduction; Energy; Environmental Challenges; Metallics; Photo Reduction; Photocatalytic Performance; Photocatalytic Process; Separation Efficiency; Synergistic Effect; Heterojunctions
제목
Synergistic effects of Ag/g-C3N4-incorporated bi-metallic ZnTi-LDH in CO2 photoreduction to hydrocarbons
저자
Samuel Prabagar, Jijoe Samuel; Ashajyothi, C.; Tripathi, Arpan Kumar; Makgwane, Peter Ramashadi; Rasool, Akhtar; Alqarni, Mohammed Hamed Saeed; Foudah, Ahmed I.; Lim, Dongkwon; Puttaiah, Shivaraju Harikaranahalli
DOI
10.1039/d5ma00650c
발행일
2025-08-26
유형
Article
저널명
Materials Advances
권
6
호
17
페이지
6008 ~ 6021