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首页> 外文期刊>Inorganica Chimica Acta >Benzo-15-crown-5 (2,3,5,6,8,9,11,12-octahydrobenzo [b] [1,4,7,10,13] pentaoxacyclopentadecine) and dibenzo-15-crown-5 (6,7,9,10,17,18-hexahydrodibenzo [b, h] [1,4,7,10,13]pentaoxacyclopentadecine as fluorescent probes for physiologically important potassium ion
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Benzo-15-crown-5 (2,3,5,6,8,9,11,12-octahydrobenzo [b] [1,4,7,10,13] pentaoxacyclopentadecine) and dibenzo-15-crown-5 (6,7,9,10,17,18-hexahydrodibenzo [b, h] [1,4,7,10,13]pentaoxacyclopentadecine as fluorescent probes for physiologically important potassium ion

机译:苯并-15冠-5(2,3,5,6,8,9,11,12- octahydrobenzo [b] [1,4,7,10,13]五苏昔洛替昔(Pentaxcyclopentecine)和Dibenzo-15-Crown-5( 6,7,9,10,17,18-18-六氢二苯苄酮[B,H] [1,4,7,10,13]五氧基环戊十二素作为生理重要的钾离子的荧光探针

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摘要

Cation recognition plays a vital role in defining advanced functions of macromolecules in nature. An example of such an interaction is the action of a natural antibiotic, valinomycin, that behaves as a potassium ionophore. It encages the cation to transport it across a cell membrane and easily releases it inside the cell. Macrocyclic complexes of some crown ethers mimick alkali ion interactions with natural ionophores. We have synthesized complexes of two crown ethers namely benzo-15-crown-5 (2,3,5,6,8,9,11,12-octahydrobenzo [b] [1,4,7,10,13] pentaoxacyclopentadecine) and dibenzo-15-crown-5 (6,7,9,10,17,18-hexahydrodibenzo [b,h] [1,4,7,10,13]pentaoxacyclopentadecine with potassium halides (fluoride, chloride, bromide and iodide) in acetonitrile and characterized them by IR, UV, ESI-MS, H-1 NMR and C-13 NMR techniques. The effect of the anion on the stability of the complexes was observed by H-1 NMR studies. The alkali metal ion is held to the oxygen donor atoms of the macrocyclic ring by ion-dipole interactions. The potential of the small ring oxacrown ethers, benzo-15-crown-5 and dibenzo-15-crown-5, to act as probes for potassium ions in dilute solutions (4.1 x 10 M-4) was investigated by recording the variation in the fluorescence spectra of benzo-15-crown-5 and dibenzo-15-crown-5 on complexation with potassium fluoride in acetonitrile and chloroform. The rigidity of the macrocyclic ring and proximity of fluorophore units affected the fluorescence intensity of the complexes.
机译:阳离子识别在定义自然界中大分子的先进功能方面发挥着至关重要的作用。这种相互作用的一个例子是天然抗生素,缬氨酸霉素的作用,其表现为钾离子载量。拍摄阳离子将其运输在细胞膜上,并且容易将其释放在细胞内。一些冠醚的大环复合物与天然离子团模仿碱离子相互作用。我们已经合成了两个冠醚的复合物,即苯并-15-Crown-5(2,3,5,6,8,9,11,12- octahydrobenzo [b] [1,4,7,10,13]五苏西芳烃)和二苯甲酰-15冠-5(6,7,9,10,17,18-18-六氢二苯肼[B,H] [1,4,7,10,13]与卤化钾(氟化物,氯化物,溴和碘化物(氟) )在乙腈中,用IR,UV,ESI-MS,H-1 NMR和C-13 NMR技术表征它们。通过H-1 NMR研究观察阴离子对复合物的稳定性的影响。碱金属离子通过离子偶极相互作用将氧气供体原子保持在巨循环环。小环氧化醚,苯并-15-Crown-5和Dibenzo-15-Crown-5的潜力作为钾离子的探针通过记录苯并-15-Crown-5和二苯并-15-Crown-5的荧光光谱的变化来研究稀释溶液(4.1×10M-4)对乙腈和氯仿中的氟化钾络合的粘合剂。刚性的刚性宏观环和Proxim荧光团单元的Ity影响了复合物的荧光强度。

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