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Construction of TiO2@ZnO nanofibers with beads-on-a-string heterostructures for photoelectrochemical detection of lactic acid.

Authors :
Yang, Zheng-Ying
Song, Jun
Cai, Tian-Xiang
Jiang, Ruo-Li
Dai, Jinyu
Xu, Keqiang
Yang, Xiu-Li
Xie, Ming-Hua
Source :
Journal of Alloys & Compounds. Oct2023, Vol. 960, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Photoelectrochemical sensing is a promising solution for health monitoring and food safety guarantee, and developing novel strategies for the facile preparation of advanced photoelectrochemical sensors is challenging. In this work, we report a novel strategy for preparing TiO 2 nanofibers threaded ZnO heterostructures and the selective photoelectrochemical detection of lactic acid. Cascade electrospinning and hot-pressing technologies were employed to prepare TiO 2 nanofibers threaded ZIF-8 precursor, and subsequent pyrolysis of ZIF-8 nanocrystals afforded beads-on-a-string heterostructures of TiO 2 @ZnO. The bead-like TiO 2 @ZnO heterostructures exhibit significantly enhanced charge transfer activity, photocurrent density and the smallest overpotential compared against that of ZnO and TiO 2. The resultant photoelectrochemical sensors demonstrate a low detection limit of 0.031 μM, a high sensitivity of 29.18 μA mM−1, a wide linear range between 0.1 and 1.0 mM, and excellent reproducibility. Furthermore, GC-MS and in situ FTIR studies confirm the mechanistic pathway of photoelectrochemical oxidation. This work provides a facile strategy for developing MOFs derived heterostructures, and advances in various high performance photoelectrochemical applications could be envisioned. [Display omitted] • Beads-on-a-string heterostructures of 1D TiO2@ZnO were fabricated. • Facile strategy of cascade hot-pressing ZIF-8 onto electrospun TiO2 was designed. • PEC detection of lactic acid was achieved with excellent selectivity and sensitivity. • Sensing mechanism was revealed by GC-MS and in situ DRIFTS studies. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09258388
Volume :
960
Database :
Academic Search Index
Journal :
Journal of Alloys & Compounds
Publication Type :
Academic Journal
Accession number :
164857111
Full Text :
https://doi.org/10.1016/j.jallcom.2023.170659