Zirconium‐Pentacarboxylate Frameworks with Coexisted 4‐ and 9‐Connected Zr6 Clusters for Detection and Removal of Tetracycline Hydrochloride

盐酸四环素 材料科学 四环素 盐酸盐 金属有机骨架 核化学 有机化学 冶金 化学 抗生素 吸附 生物化学
作者
Tianyou Peng,Chao‐Qin Han,Kang Zhou,Lei Wang,Guozhong Xu,Xiao‐Yuan Liu
出处
期刊:Advanced Optical Materials [Wiley]
卷期号:12 (17) 被引量:1
标识
DOI:10.1002/adom.202303277
摘要

Abstract Due to the varying connectivity of Zr 6 cluster and unlimited carboxylic acid‐based organic linkers, zirconium‐based metal‐organic frameworks (Zr‐MOFs) exhibit the most abundant structural diversity. However, Zr‐MOFs possessing more than one kind of Zr 6 clusters in a single structure have not yet been reported. Herein, four new pentacarboxylic acids are synthesized to prepare Zr‐MOFs, HIAM‐4051 to HIAM‐4054. As a result, due to the different lengths of linkers, two novel underlying nets ( typ and cqh ) are found in these four MOFs with coexisting 4‐ and 9‐connected Zr 6 clusters. Furthermore, by changing the acceptor groups in the linker skeleton, the emission of results Zr‐MOFs can be customized from blue, yellow–green to red. The nano‐sized HIAM‐4053‐NS exhibits high sensitivity and efficient adsorption for tetracycline hydrochloride with 0.22 µ m detection limit and ≈0.6 g g −1 removal capacity. To the best of the knowledge, this work is the first example of constructing Zr‐MOFs using pentacarboxylic acids as organic linkers and the first report of Zr‐MOFs with coexisted Zr 6 connectivities in a single MOF matrix. This study provides a novel insight for the construction of Zr‐MOFs with unprecedented structures, which will not only enrich the structure diversity but also offer more opportunity to extend the applications of Zr‐MOFs.
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