Bioinspired forest-like Z-scheme heterojunction of TiO

Bifunctional catalysts for simultaneous solar fuel generation and antibacterial properties have gained increasing attention in the energy and environmental field. However, their practical implementation is still limited by the challenges in recovery and the instability of the photocatalysts. The development of a self-standing substrate-formed photocatalyst provides a promising solution to this issue. In this study, we developed a self-standing bioinspired forest-like Z-scheme heterojunction of TiO 2 -ZnIn 2 S 4 (ZIS) on carbon cloth (CC) for bifunctional photocatalysis. The optimized CC-TiO 2 -ZIS showed remarkable solar fuel production via photocatalytic CO 2 reduction (PCR) and demonstrated recycling stability in a portable photocatalytic system using negligible solution. Moreover, the forest-like morphology possesses a mechanical cutting effect against invasive microorganisms. Specifically, CC-TiO 2 -ZIS achieved an impressive 98.35 ​% inhibition rate against E. coli within 5 ​min of illumination and a superior CO generation of 317.37 ​μmol ​h −1 ​m −2 , which was higher than pristine CC, CC-TiO 2 , and CC-ZIS. This innovative bioinspired forest-like CC-TiO 2 -ZIS holds significant promise for future solar-driven energy conversion and environmental remediation.

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Publication Details

Journal
DOAJ (DOAJ: Directory of Open Access Journals)
Published
2026-10-01
DOI
https://doi.org/10.1016/j.nanoms.2024.12.005
Primary Topic
Advanced Photocatalysis Techniques
Type
article
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article

Bioinspired forest-like Z-scheme heterojunction of TiO

Heng Rao, Chenxi Tang, Ping She, Junsheng Qin et al.
DOAJ (DOAJ: Directory of Open Access Journals)
Advanced Photocatalysis Techniques
article

Bioinspired forest-like Z-scheme heterojunction of TiO

Heng Rao, Chenxi Tang, Ping She, Junsheng Qin, Shuming Li
article en

Abstract

Bifunctional catalysts for simultaneous solar fuel generation and antibacterial properties have gained increasing attention in the energy and environmental field. However, their practical implementation is still limited by the challenges in recovery and the instability of the photocatalysts. The development of a self-standing substrate-formed photocatalyst provides a promising solution to this issue. In this study, we developed a self-standing bioinspired forest-like Z-scheme heterojunction of TiO 2 -ZnIn 2 S 4 (ZIS) on carbon cloth (CC) for bifunctional photocatalysis. The optimized CC-TiO 2 -ZIS showed remarkable solar fuel production via photocatalytic CO 2 reduction (PCR) and demonstrated recycling stability in a portable photocatalytic system using negligible solution. Moreover, the forest-like morphology possesses a mechanical cutting effect against invasive microorganisms. Specifically, CC-TiO 2 -ZIS achieved an impressive 98.35 ​% inhibition rate against E. coli within 5 ​min of illumination and a superior CO generation of 317.37 ​μmol ​h −1 ​m −2 , which was higher than pristine CC, CC-TiO 2 , and CC-ZIS. This innovative bioinspired forest-like CC-TiO 2 -ZIS holds significant promise for future solar-driven energy conversion and environmental remediation.

DOAJ (DOAJ: Directory of Open Access Journals)
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Openalex Percentile: Top 34%
Advanced Photocatalysis Techniques
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Bioinspired forest-like Z-scheme heterojunction of TiO — Heng Rao, Chenxi Tang, et al. · DOAJ (DOAJ: Directory of Open Access Journals) (2026) | TGRS Research Map | TGRS