A new lumin'/> Zinc Metal–Organic Framework for Selective Detection and Differentiation of Fe(III) and Cr(VI) Ions in Aqueous Solution
首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Zinc Metal–Organic Framework for Selective Detection and Differentiation of Fe(III) and Cr(VI) Ions in Aqueous Solution
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Zinc Metal–Organic Framework for Selective Detection and Differentiation of Fe(III) and Cr(VI) Ions in Aqueous Solution

机译:锌金属有机框架,用于在水溶液中选择性检测和分化Fe(III)和Cr(VI)离子的选择性检测和分化

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摘要

A new luminescent Zn(II)-based metal–organic framework (MOF), [Zn2(TPOM)(NDC)2]·3.5H2O (Zn-MOF; TPOM = tetrakis(4-pyridyloxymethylene)methane and H2ndc = 2,6-naphthalenedicarboxylic acid), was successfully synthesized by a hydrothermal reaction. The MOF exhibits excellent luminescence emission, and it can detect Fe(III) and Cr(VI) ions with high selectivity, well antiinterference performance, and short response time. In addition, Zn-MOF was selected as a parent coordination compound to encapsulate Eu3+ cations to obtain a Eu3+-incorporated sample (Eu3+@Zn-MOF). Subsequently, we explored the potential application of Eu3+@Zn-MOF as a probe for the selective sensing of Fe(III) and Cr(VI) ions, and it revealed that we could differentiate Fe(III) and Cr(VI) ions by the combination Zn-MOF and Eu3+@Zn-MOF. More importantly, it represents the first example of MOF-based luminescent sensors which can detect and differentiate Fe(III) and Cr(VI) ions selectively. And the possible sensing mechanism was discussed in detail.]]>
机译:<![cdata [ src ='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/inocaj/2017/inocaj.2017.56.issue-20/acs.inorgchem.7b01822/ 20171010 /图像/中/ IC-2017-01822C_0010.gif“>新的发光Zn(II)基于金属 - 有机框架(MOF),[Zn 2 (TPOM)(NDC) 2 ]·3.5H 2 O(Zn-mof; tpom =四甲基(4-吡啶氧氧键)甲烷和H 2 Ndc = 2,6-萘二甲基酸)通过水热反应成功合成。 MOF表现出优异的发光发射,它可以检测具有高选择性,抗干扰性能和短响应时间的Fe(III)和Cr(VI)离子。此外,选择Zn-MOF作为母体配位化合物,以包封EU 3 + / sup>阳离子,得到Eu 3 + / sup> -Inglated样品(Eu 3+ < / sup> @ zn-mof)。随后,我们探讨了Eu 3 + @ zn-mof作为探针的潜在应用,用于选择性感测Fe(iii)和Cr(vi)离子,并显示我们可以区分Fe( III)和Cr(vi)离子组合Zn-Mof和Eu 3 + / sup> @ Zn-mof。更重要的是,它代表基于MOF的发光传感器的第一示例,其可以选择性地检测和分化Fe(III)和Cr(VI)离子。并且详细讨论了可能的传感机制。]]]>

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    College of Chemistry Key Laboratory of Advanced Energy Materials Chemistry (MOE) Tianjin Key Laboratory of Metal and Molecule Based Material Chemistry Collaborative Innovation Center of Chemical Science and Engineering Nankai University Tianjin 30007;

    College of Chemistry Key Laboratory of Advanced Energy Materials Chemistry (MOE) Tianjin Key Laboratory of Metal and Molecule Based Material Chemistry Collaborative Innovation Center of Chemical Science and Engineering Nankai University Tianjin 30007;

    College of Chemistry Key Laboratory of Advanced Energy Materials Chemistry (MOE) Tianjin Key Laboratory of Metal and Molecule Based Material Chemistry Collaborative Innovation Center of Chemical Science and Engineering Nankai University Tianjin 30007;

    College of Chemistry Key Laboratory of Advanced Energy Materials Chemistry (MOE) Tianjin Key Laboratory of Metal and Molecule Based Material Chemistry Collaborative Innovation Center of Chemical Science and Engineering Nankai University Tianjin 30007;

    College of Chemistry Key Laboratory of Advanced Energy Materials Chemistry (MOE) Tianjin Key Laboratory of Metal and Molecule Based Material Chemistry Collaborative Innovation Center of Chemical Science and Engineering Nankai University Tianjin 30007;

    College of Chemistry Key Laboratory of Advanced Energy Materials Chemistry (MOE) Tianjin Key Laboratory of Metal and Molecule Based Material Chemistry Collaborative Innovation Center of Chemical Science and Engineering Nankai University Tianjin 30007;

    College of Chemistry Key Laboratory of Advanced Energy Materials Chemistry (MOE) Tianjin Key Laboratory of Metal and Molecule Based Material Chemistry Collaborative Innovation Center of Chemical Science and Engineering Nankai University Tianjin 30007;

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