首页|卤化金属配位聚合物在光催化中的应用

卤化金属配位聚合物在光催化中的应用

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首先阐述了目前限制着卤化金属配位聚合物(XCP)材料发展的关键问题,如热稳定性、耐湿性较差、重金属渗出等。随后提到将卤素配位原子引入传统配位聚合物中,这种策略既有效提高材料的光吸收能力,又能稳定激发态电子,对增强材料的光催化性能具有重要意义。进一步综述了卤化金属配位聚合物材料在光催化降解有机污染物、选择性有机合成、水裂解产氢以及CO2还原方面的研究,并对该类材料在光催化领域的应用进行展望,为构建长效稳定的XCP实现高效光催化,扩大应用规模以及探究结构和性能之间的构效关系提供理论参考。
Application of metal halide coordination polymer in photocatalysis
This paper first describes the key problems that limit the development of metal-halide coordina-tion polymer(XCP)materials,such as poor thermal stability,moisture resistance,heavy metal exudation and so on.Then it is mentioned that the halogen coordination atom is introduced into the traditional coor-dination polymer.This strategy can not only effectively improve the light absorption capacity of the materi-al,but also stabilize the excited electrons,which is of great significance to enhance the photocatalytic per-formance of the material.This paper further reviews the research on the photocatalytic degradation of or-ganic pollutants,selective organic synthesis,hydrogen production from water cracking and CO2 reduction of halogenated metal coordination polymer materials,and prospects the application of such materials in the field of photocatalysis.In order to construct long-term stable XCP to achieve efficient photocatalysis,to provide theoretical reference for expanding the application scale and exploring the structure-activity rela-tionship between structure and performance.

coordination polymermetal halidephotocatalysisapplication

何厚荣、李航、廖伟名、何军

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广东工业大学轻工化工学院,广东广州 510006

南方海洋科学与工程广东省实验室(湛江),广东湛江 524000

配位聚合物 卤化金属 光催化 应用

国家自然科学基金青年项目广东省自然科学基金面上项目

219010462021A1515010274

2024

应用化工
陕西省石油化工研究设计院 陕西省化工学会

应用化工

CSTPCD北大核心
影响因子:0.411
ISSN:1671-3206
年,卷(期):2024.53(2)
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