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基于嘧啶基四元羧酸的Zr-MOF异质结的构建及光催化去污性能

段婕 秦颖彤 翟薇丽 王贤 叶周曹 李庆

纺织高校基础科学学报2026,Vol.39Issue(2):80-90,11.
纺织高校基础科学学报2026,Vol.39Issue(2):80-90,11.DOI:10.13338/j.issn.1006-8341.2026.02.010

基于嘧啶基四元羧酸的Zr-MOF异质结的构建及光催化去污性能

Construction of Zr-MOF heterojunction based on pyrimidine tetracarboxylic acid and its photocatalytic decontamination performances

段婕 1秦颖彤 1翟薇丽 2王贤 2叶周曹 1李庆1

作者信息

  • 1. 西安工程大学 环境与化学工程学院,陕西 西安 710048
  • 2. 西安工程大学 纺织科学与工程学院,陕西 西安 710048
  • 折叠

摘要

Abstract

In order to fully utilize the high stability of Zr-MOF catalyst and further enhance their visible light catalytic decontamination efficiency,a pyrimidine-based Zr-MOF was synthesized and combined with the in-situ generated In2S3 species to prepare a novel In2S3/Zr-MOF composite material.And its ability of photocatalytically purifying of Cr2O2-7 and dyes in water was studied under the sunlight simulated by xenon lamp.The results indicate that the photochemical removal efficiency of Cr2O2-7 by the constructed heterojunction material within 60 min is confirmed to be 91.52%,and the reaction rates reach 3.66 and 2.70 times that of Zr-MOF and In2S3,respectively.Within 180 and 120 min,the photocatalytic degrada-tion efficiencies of the dyes methylene blue(MB)and rhodamine B(RhB)have reached 84.14%and 82.89%,with the reaction rates of 2.83 and 2.66 times,as well as 1.75 and 1.20 times that of Zr-MOF and In2S3,respectively.Mechanism analysis revealed that the carrier transfer between heterogeneous components conformed to the Type-II mechanism.The electrons aggregated in the LUCO orbitals of Zr-MOF and the indirectly generated superoxide radicals played a decisive role in the reduction of Cr2O2-7 and the degradation of dyes.

关键词

嘧啶基Zr-MOF/异质结/光催化去氧化及脱色/Cr2O2-7和染料

Key words

pyrimidine-based Zr-MOF/heterojunction/photocatalytic deoxidation and decoloriza-tion/Cr2O2-7 and dyes

分类

轻工纺织

引用本文复制引用

段婕,秦颖彤,翟薇丽,王贤,叶周曹,李庆..基于嘧啶基四元羧酸的Zr-MOF异质结的构建及光催化去污性能[J].纺织高校基础科学学报,2026,39(2):80-90,11.

基金项目

国家自然科学基金面上项目(22078253) (22078253)

新疆生产建设兵团重点领域科技攻关项目(2025AB040) (2025AB040)

西安工程大学研究生创新基金项目(chx2025021) (chx2025021)

纺织高校基础科学学报

1006-8341

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