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ESI-FTICR mass spectrometric study of alcohol complexation properties of mono- and diphosphonate-bridged cavitands

机译:ESI-FTICR质谱研究单膦酸酯和二膦酸酯桥接的空泡酚的醇络合特性

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Alcohol complexation properties of eight mono- and diphenyl phosphonate-bridged cavitands (Scheme 1). were studied by electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry (ESI-FTICR) and theoretical calculations. The cavitands varied in number and position of phenyl phosphonate bridges and their orientation with respect to the cavity, length of the lower rim alkyl chains, and substituents at apical positions of the resorcarene skeleton. The specificities of the different cavitands toward primary, secondary, and tertiary alcohols varying long of the alkyl chain were investigated, together with the stabilities of the formed complexes. The number, position, and orientation of the P = O moieties affected the complex formation of the cavitands and stability of the complexes dramatically. Methyl groups at apical positions of the resorcarene skeleton also affected the complexation properties. Although length and branching of the alkyl chain of the alcohol influenced the complex formation, the effect on stability of the complexes was negligible.
机译:八个单-和二苯基膦酸酯桥接的空泡石的醇络合特性(方案1)。通过电喷雾电离傅立叶变换离子回旋共振质谱(ESI-FTICR)和理论计算进行了研究。空洞体在苯基膦酸酯桥的数量和位置以及它们相对于腔体的方向,下边缘烷基链的长度以及间苯二酚骨架的顶部位置的取代基方面变化。研究了不同空洞对烷基链长度变化的伯,仲和叔醇的特异性,以及形成的配合物的稳定性。 P = O部分的数量,位置和取向影响空洞体的复合物形成和复合物的稳定性。间苯二烯骨架的顶部的甲基也影响络合性能。尽管醇的烷基链的长度和支链影响了配合物的形成,但是对配合物稳定性的影响可以忽略不计。

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