Fabrication of MXene-derived TiO 2 /Ti 3 C 2 integrated with a ZnS heterostructure and their synergistic effect on the enhanced photocatalytic degradation of tetracycline

  • Lee, Seongju; 
  • Devarayapalli, Kamakshaiah Charyulu; 
  • Kim, Bolam; 
  • Lim, Youngsu; 
  • Lee, Dae Sung
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초록

Developing innovative photocatalysts for the efficient degradation of pharmaceutical pollutants is crucial in environmental remediation. In this study, we investigate the synthesis of TiO2 nanosheets derived from MXene, specifically integrated onto highly conductive Ti3 C2 MXene, and subsequently combined with zinc sulfide (ZnS) to form a heterojunction. This integration process is accomplished using a hydrothermal approach followed by a self-assembly method. We aim to assess the effectiveness of this integrated system in enhancing the photocatalytic degradation of tetracycline (TC). TiO2 /Ti3 C2 (TT) synthesized in situ exhibits high-energy lattice facets (001) of TiO2 nanosheets, thereby contributing to an exclusive heterojunction within the TiO2 /Ti3 C2 /ZnS (ZTT) heterostructure. The loading of ZnS nanoparticles significantly increases the surface area with a narrow band gap, enhancing the potential for light emission within the visible region. Consequently, ZnS synergistically affects the ZTT x (where x = wt% of ZnS on TT) heterostructure matrix, notably promoting the separation and transfer abilities of the photogenerated carriers. The ZTT5 heterostructure exhibits remarkable adsorption and photoreduction efficiencies, achieving a 97.1 % TC removal in 60 min under UV light. Moreover, under simulated solar light, the ZTT5 heterostructure exhibits an impressive TC removal rate of similar to 93.8 % in 90 min. These results highlight the effective performance of the ZTT5 heterojunction catalyst in facilitating photogenerated charge carriers, leading to improved photocatalytic capabilities. Furthermore, the band structure and density of states of TiO2 (101), Ti3 C2 (002), and ZnS (111) were investigated using density functional theory. In addition, a photoreduction mechanism was proposed for TC, involving the transfer of electrons from TiO2 to the MXene surface. After the transfer, the electrons react with O2 to generate center dot O2 -, attributed to the high electron mobility of MXene. The results of this study emphasize the significant potential of the ZTT5 heterostructure for efficiently degrading pharmaceutical pollutants from wastewater. (c) 2024 Published by Elsevier Ltd on behalf of The editorial office of Journal of Materials Science & Technology.

키워드

Photocatalyst; MXene; Adsorption; Photoreduction; Tetracycline; 2-DIMENSIONAL TI3C2; OPTICAL-PROPERTIES; AQUEOUS-SOLUTION; 001 FACETS; HYDROGEN; ADSORPTION; NANOSHEETS; REDUCTION; COMPOSITE; HETEROJUNCTIONS
제목
Fabrication of MXene-derived TiO 2 /Ti 3 C 2 integrated with a ZnS heterostructure and their synergistic effect on the enhanced photocatalytic degradation of tetracycline
저자
Lee, Seongju; Devarayapalli, Kamakshaiah Charyulu; Kim, Bolam; Lim, Youngsu; Lee, Dae Sung
DOI
10.1016/j.jmst.2024.02.026
발행일
2024-11-01
유형
Article
저널명
Journal of Materials Science & Technology
권
198
페이지
186 ~ 199