Sustainable solar-induced decontamination of waterborne pharmaceutical pollutants using a structurally engineered Ti3C2 MXene/Bi2MoO6/g-C3N4 S-scheme heterocatalyst with tri-component interfacial charge transfer

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초록

The persistence of pharmaceutical pollutants in aquatic environments poses significant threats to ecosystems and public health, thereby necessitating the development of highly efficient photocatalysts for their removal. In this study, a novel 2D/2D/2D ternary heterostructure comprising Ti3C2 MXene (TC), Bi2MoO6 (BMO), and g-C3N4 (CN) was rationally engineered to achieve superior solar-driven photodegradation of waterborne pharmaceutical contaminants. The optimized TC/BMO-15/CN hybrid exhibited outstanding degradation efficiencies of similar to 100 % for cefixime in 90 min and 99 % for naproxen in just 30 min, significantly outperforming pristine CN, BMO, and the binary BMO-15/CN photocatalyst. Comprehensive structural, optical, and electrochemical characterizations revealed that the synergistic integration of TC as a conductive bridge-combined with the optimal BMO content and intimate interfacial coupling-enhanced light harvesting, facilitated efficient tri-component interfacial charge transfer, and prolonged charge carrier lifetimes. Mechanistic investigations using reactive species quenching, ESR spectroscopy, and in situ light-irradiated XPS confirmed the formation of an S-scheme heterojunction, which enables selective spatial retention of high-energy charge carriers for redox reactions. By uniting architectural synergy with S-scheme charge transfer, the system enhances charge dynamics and enables efficient mineralization of complex pharmaceutical pollutants. Furthermore, the TC/BMO-15/CN catalyst demonstrated excellent structural stability and maintained high degradation performance across various water matrices and multiple reusability cycles. This study offers valuable insights into heterointerface engineering and presents a strategic platform for designing high-performance photocatalysts for practical environmental remediation applications.

키워드

Ti3C2 MXene; S -Scheme heterojunction; Emerging pharmaceutical pollutants; Solar-driven photocatalysis; Environmental remediation; g-C3N4/Bi2MoO6; GRAPHITIC CARBON NITRIDE; PHOTOCATALYTIC DEGRADATION; RECENT PROGRESS; PHOTODEGRADATION; STRATEGIES; G-C3N4; ENERGY; TIO2
제목
Sustainable solar-induced decontamination of waterborne pharmaceutical pollutants using a structurally engineered Ti3C2 MXene/Bi2MoO6/g-C3N4 S-scheme heterocatalyst with tri-component interfacial charge transfer
저자
Lee, Dong-Eun; Moru, Satyanarayana; Jo, Wan-Kuen; Tonda, Surendar
DOI
10.1016/j.envres.2025.123045
발행일
2025-12-15
유형
Article
저널명
Environmental Research
권
287