A Novel Rotaxane@MOF as Multiresponsive Fluorescence Sensor for Detecting Fe3+, Cr2O72–, and Antibiotics

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-09-12 DOI:10.1021/acs.cgd.4c00913
Li-Xia He, Xiao Xiao, Yao-Mei Fu, Ning-Hao Wang, Jing Sun, Xinlong Wang, Xingqi Han, Zhong-Min Su, Xue-Song Wu
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Abstract

The first example rotaxane@MOF (named as CUST-761) has been designed and constructed via combining CB[6]-based rotaxane ([PR44]2+·2[NO3]), 4,4′-biphenyldicarboxylate sodium salts (Na2BPDC), and transition metal cadmium ion under solvothermal conditions. X-ray single crystal diffraction revealed CUST-761 exhibits a two-dimensional (2D) layered structure where rotaxanes are well embedded in the crystal lattices formed by BPDCs and cadmium ions. Thermogravimetric analysis (TGA) and Powder X-ray diffraction (PXRD) showed that CUST-761 possesses excellent stability. The utility of CUST-761 as fluorescence sensors has also been discussed. The results indicated that CUST-761 can be used as a multiresponsive fluorescence sensor for detecting Fe3+ and Cr2O72– with good sensitivity, high selectivity, and recoverability, even in the presence of other interfering ions. Besides, CUST-761 also can selectively detect nitrofurantoin. The mechanism of CUST-761 as a multiresponsive fluorescence sensor for detecting Fe3+, Cr2O72–, and the antibiotic nitrofurantoin has been clarified by experiments and theoretical calculations. This work provides insights into the design and synthesis of fluorescence sensing crystal-state materials.

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用于检测 Fe3+、Cr2O72- 和抗生素的新型 Rotaxane@MOF 多反应荧光传感器
在溶热条件下,通过将 CB[6]-based rotaxane([PR44]2+-2[NO3]-)、4,4′-联苯二羧酸钠盐(Na2BPDC)和过渡金属镉离子结合在一起,设计并构建了第一个例子 rotaxane@MOF(命名为 CUST-761)。X 射线单晶衍射显示 CUST-761 呈现出二维(2D)层状结构,其中轮烷被很好地嵌入由 BPDC 和镉离子形成的晶格中。热重分析(TGA)和粉末 X 射线衍射(PXRD)表明,CUST-761 具有出色的稳定性。此外,还讨论了 CUST-761 作为荧光传感器的实用性。结果表明,CUST-761 可用作检测 Fe3+ 和 Cr2O72- 的多反应性荧光传感器,具有良好的灵敏度、高选择性和可回收性,即使在存在其他干扰离子的情况下也是如此。此外,CUST-761 还能选择性地检测硝基呋喃妥因。通过实验和理论计算,阐明了 CUST-761 作为多反应荧光传感器检测 Fe3+、Cr2O72- 和抗生素硝基呋喃妥因的机理。这项工作为荧光传感晶态材料的设计和合成提供了启示。
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CiteScore
7.20
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4.30%
发文量
567
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