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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Uranyl Organic Framework as a Highly Selective and Sensitive Turnon and Turn-off Luminescent Sensor for Dual Functional Detection Arginine and MnO4(-)
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Uranyl Organic Framework as a Highly Selective and Sensitive Turnon and Turn-off Luminescent Sensor for Dual Functional Detection Arginine and MnO4(-)

机译:铀酰有机框架作为高度选择性和敏感的短路和用于双官能检测精氨酸和MnO4( - )的关断发光传感器

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摘要

Five new uranyl coordination polymers were prepared by the hydrothermal method based on 5-nitroisophthalic acid (H(2)nip) as (UO2)(nip)(2,2'-bpy) (1), (H(2)4,4'-bpy)center dot[(UO2)(3)(nip)(4)]center dot(4,4'-bpy) (2), (H(2)bpe)center dot[(UO2)(0.5)(nip)] (3), (H(2)bpp)center dot[(UO2)(2)-(nip)(3)]center dot H2O (4), and (H(2)tmp)center dot[(UO2)(nip)(2)](5) [2,2'-bpy = 2,2'-bipyridine, 4,4'-bpy = 4,4'bipyridine, bpe = 4,4'-vinylenedipyridine, bpp = 4,4' -trimethylenedipyridine, tmp = tetramethylpyrazine]. All of these synthesized complexes have been characterized by single crystal and powder X-ray diffraction, IR spectra, thermogravimetric analysis, elemental analysis, and luminescent properties. In particular, it is found that compounds 1 and 4 can be used as a luminescent sensor to efficiently detect arginine in aqueous solution by means of "turn-on"; the detection limits were 1.06 X 10(-6) and 6.42 X 10(-6) mol/L, respectively. Moreover, 4 can also be used as a bifunctional sensor for selective sensing of MnO4- anion by "turn-off". The detection limit of MnO4- in water was 1.79 x 10(-6) mol/L; the Ks, was 1.88 X 10(4). The sensing effect of arginine in simulated grape juice samples and MnO4 in simulated river water samples was also investigated by this sensing system with high recovery. In addition, the possible mechanism of sensing arginine and MnO4- in the aqueous solution was discussed.
机译:通过基于5-二硝基苯二甲酸(H(2)Nip)为(UO 2)(NIP)(2,2'-BPY)(1),(H(2)4,所述)制备五种新的铀酰配位聚合物。(H(2)4, 4'-BPY)中心点[(UO2)(3)(NIP)(4)]中心点(4,4'-BPY)(2),(H(2)BPE)中心点[(UO2)(0.5 )(nip)](3),(H(2)bpp)中心点[(UO 2)(2) - (nip)(3)]中心点H2O(4),(H(2)TMP)中心点[(UO2)(NIP)(2)](5)[2,2'-BPY = 2,2'- Bi吡啶,4,4'-Bpy = 4,4'1'BIPyridine,BPE = 4,4'-乙烯基二吡啶,BPP = 4,4'-三甲基二吡啶,TMP =四甲基吡嗪]。所有这些合成的配合物都是通过单晶和粉末X射线衍射,红外光谱,热重分析,元素分析和发光性能的特征。特别地,发现化合物1和4可用作发光传感器,通过“开启”有效地检测水溶液中的精氨酸;检测限为1.06×10(-6)和6.42×10(-6)mol / L.此外,图4所示也可以用作双功能传感器,用于通过“关断”选择性感测MNO4。 MnO 4-在水中的检出限为1.79×10( - 6)mol / l; KS,为1.88 x 10(4)。该传感系统高回收率还研究了精氨酸在模拟葡萄汁样品和MNO4中的感应效果。此外,讨论了感测精氨酸和MNO4-在水溶液中的可能机制。

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