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两种3D微孔Zn-MOF对水溶液中Fe3+、Cr2O72-和丙酮分子的荧光传感
引用本文:高楼军,米竟,柴红梅,任宜霞,孙雪花,张钢强,张琰.两种3D微孔Zn-MOF对水溶液中Fe3+、Cr2O72-和丙酮分子的荧光传感[J].无机化学学报,2022,38(4):725-734.
作者姓名:高楼军  米竟  柴红梅  任宜霞  孙雪花  张钢强  张琰
作者单位:延安大学化学化工学院, 陕西省化学反应工程重点实验室, 延安 716000;新疆宣力环保能源有限公司, 哈密 839000
基金项目:国家自然科学基金(No.22063010,21763028)、延安大学研究生创新计划项目(No.YCX2021101)和陕西省大学生创新计划项目(No.S202110719063)资助。
摘    要:通过溶剂热法合成了2种三维微孔锌金属有机框架材料,其分子式为Zn3(DBA)(OH)(1,10-phen)2]n(1)和{Zn2(HDBA)(4,4''-bipy)1.5]·H2O}n(2)(H5DBA=3,5-二(2'',4''-对羧基苯基)苯甲酸;1,10-phen=1,10-菲咯啉;4,4''-bipy=4,4''-联吡啶)。结构分析表明,配合物1为三核锌基金属单元的三维微孔骨架,配合物2为双核锌基的微孔结构。与2相比,配合物1在水中具有较强的发光性能,可作为检测Fe3+、Cr2O72-和丙酮分子的发光传感器,具有较高的选择性和灵敏度。

关 键 词:Zn-MOFs  Fe3+  Cr2O72-  丙酮  荧光传感
收稿时间:2021/6/26 0:00:00
修稿时间:2021/6/26 0:00:00

Two 3D Microporous Zn-MOF for Fluorescence Sensing of Fe3+,Cr2O72-, and Acetone in Aqueous Solution
GAO Lou-Jun,MI Jing,CHAI Hong-Mei,REN Yi-Xi,SUN Xue-Hu,ZHANG Gang-Qiang,ZHANG Yan.Two 3D Microporous Zn-MOF for Fluorescence Sensing of Fe3+,Cr2O72-, and Acetone in Aqueous Solution[J].Chinese Journal of Inorganic Chemistry,2022,38(4):725-734.
Authors:GAO Lou-Jun  MI Jing  CHAI Hong-Mei  REN Yi-Xi  SUN Xue-Hu  ZHANG Gang-Qiang  ZHANG Yan
Institution:Shaanxi Key Laboratory of Chemical Reaction Engineering, College of Chemistry and Chemical Engineering, Yan''an University, Yan''an, Shaanxi 716000, China;Xinjiang Xuanli Environmental Protection Energy Co., Ltd., Hami, Xinjiang 839000, China
Abstract:Two 3D microporous zinc metal-organic frameworks, formulated as Zn3(DBA)(OH)(1,10-phen)2]n (1) and {Zn2(HDBA)(4,4''-bipy)1.5]·H2O}n (2) (H5DBA=(3,5-di(2'',4''-dicarboxylphenyl)benzoic acid; 1,10-phen=1,10-phenanthroline; 4,4''-bipy=4,4''-bipyridine), were synthesized under solvothermal conditions. Structural analysis shows that 1 could be described as a 3D microporous framework based on the trinuclear metal units, while 2 exhibits the microporous structure from the binuclear zinc groups. Compared with 2, 1 demonstrated a strong luminescence in the water, so it could be used as luminescent sensors for detection of Fe3+, Cr2O72-, and acetone molecules with high selectivity and sensitivity.
Keywords:Zn-MOFs  Fe3+  Cr2O72-  acetone  fluorescence sensing
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