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杯[4]芳烃卟啉原类似物的顺式和反式异构体的分离、X 射线结构、阴离子结合和氟离子介导的质子-氘交换研究。

The syn and anti isomers of the porphyrinogen-like precursor of calix[4]phyrin: isolation, X-ray structure, anion binding and fluoride-ion-mediated proton-deuterium exchange studies.

机构信息

Department of Chemistry, Indian Institute of Technology, Kharagpur, India 721 302.

出版信息

Org Biomol Chem. 2013 May 7;11(17):2818-26. doi: 10.1039/c3ob40147b. Epub 2013 Mar 13.

DOI:10.1039/c3ob40147b
PMID:23487183
Abstract

Porphyrinogen-like precursors of calix[4]phyrins are presumed to be unstable owing to their auto-oxidation. In contrast to this, the syn and the anti isomers of a calix[4]pyrrole molecule containing pyridine moieties at the meso positions were isolated and their structures were determined by single crystal X-ray diffraction studies. Both the isomers gave the same calix[4]phyrin molecule upon oxidation. The anion binding properties of both the isomers were studied in DMSO-d6 by the EQNMR method, which showed that they have a preference of binding with the F(-) ion over the other large sized halide and oxo anions. In addition, the F(-) ion mediated H/D exchange process was monitored by the (19)F NMR method. The solution state structures of the 1 : 1 F(-) ion complexes containing deuterium atoms formed by a random but sequential substitution of NH protons by deuterium atoms were identified from their multiplicity patterns observed in the proton coupled (19)F NMR spectrum, which are supported by the proton decoupled (19)F NMR spectrum showing one singlet for each type of F(-) ion complex in solution for both the syn and anti isomers, correlating with their solid state structures.

摘要

杯[4]吡咯啉原类似物被认为由于其自动氧化而不稳定。与此相反,在中位含有吡啶基团的杯[4]吡咯分子的顺式和反式异构体被分离出来,并通过单晶 X 射线衍射研究确定了它们的结构。两种异构体在氧化后都得到相同的杯[4]卟啉分子。通过 EQNMR 方法研究了两种异构体在 DMSO-d6 中的阴离子结合性质,结果表明它们优先与 F(-)离子结合,而不是其他大尺寸的卤化物和氧阴离子。此外,通过 (19)F NMR 方法监测 F(-)离子介导的 H/D 交换过程。通过质子偶合 (19)F NMR 光谱中观察到的多重性模式,从由 NH 质子随机但顺序氘取代形成的含有氘原子的 1:1 F(-)离子配合物的溶液状态结构中识别出来,这得到了质子去耦 (19)F NMR 光谱的支持,该光谱显示顺式和反式异构体在溶液中每种 F(-)离子配合物的单一峰,与它们的固态结构相对应。

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