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Photocatalytic reduction of Cr(VI) and degradation of RhB by assembled novel In2S3/Zr-biquinoline framework heterojunction photocatalyst via xenon lamp.

Authors :
Liu, Cang
Liu, Jie
Liu, Tian-Hui
Wang, Zhi-Gang
Yin, Huan-Yu
Li, Dan
Yuan, Long
Li, Qing
Source :
Journal of Solid State Chemistry. Jul2024, Vol. 335, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Dichromates and dyes have been widely used in industrial and agricultural production, but they are also responsible for the deterioration of water environments. Photochemical purification of them based on MOFs based photocatalysts has been proven to be feasible. And construction of MOFs based heterojunctions to polish the band states is an effective method for enhancing the separation of photogenerated electron-hole separation and carriers migration under low energy light. Herein, a Zr(IV)-biquinoline framework with bcu topology was synthesized to act as a matrix for depositing the in-situ generated In 2 S 3 species, providing a novel In 2 S 3 /Zr-MOF heterojunction. Indeed, owing to the highly matched band structure of the two components, the new heterojunction exhibits optimized visible light utility, photogenerated electron-hole recombination inhibition ability and carriers migration kinetics. Ingeniously, the 10%-Zr-MOF exhibited excellent photocatalytic REDOX abilities against Cr(VI) ions and dye RhB, with the photocatalytic deoxidation efficiency towards Cr(VI) ions (96.7 %) has been confirmed to be 3.14 and 1.42 times that of pristine Zr-MOF (30.8 %) and sole In 2 S 3 (68.2 %), respectively. Moreover, it also displayed a photocatalytic reduction kinetic rate of 0.031 min−1, which is 11.3 times and 2.69 times higher than that of fresh Zr-MOF (0.00274 min−1) and pure In 2 S 3 (0.0115 min−1). And the photocatalytic reduction and degradation mechanisms of In 2 S 3 /Zr-MOF also have been deliberately proposed, according to the detailed experimental and instrumental characterization results. This contribution presents a feasible post-modification reinforcement strategy to assemble novel Zr-MOFs based photocatalytic platforms for the decontamination of Cr(VI) and dyes from water. Greatly optimized band states, low energy light energy utilization, optical-electronic properties and decontamination of Cr(VI) and RhB were achieved via a novel In 2 S 3 /Zr-MOF heterojunction. Its photocatalytic deoxidation efficiency towards Cr(VI) is 3.14 and 1.42 times of pristine Zr-MOF and pure In 2 S 3 , respectively. [Display omitted] • Band structures modulating based on metal sulfides/Zr-MOF heterojunction. • Greatly optimized band states. • Significantly improved light energy utilization and optical-electronic properties. • Remarkably enhanced photocatalytic efficiencies and accelerated reaction kinetics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00224596
Volume :
335
Database :
Academic Search Index
Journal :
Journal of Solid State Chemistry
Publication Type :
Academic Journal
Accession number :
177085564
Full Text :
https://doi.org/10.1016/j.jssc.2024.124718