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首页> 外文期刊>Journal of Molecular Structure >Monensin A benzyl ester and its complexes with monovalent metal cations studied by spectroscopic, mass spectrometry and semiempirical methods
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Monensin A benzyl ester and its complexes with monovalent metal cations studied by spectroscopic, mass spectrometry and semiempirical methods

机译:莫能菌素A苄酯及其与一价金属阳离子的络合物的光谱,质谱和半经验方法研究

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摘要

Monensin A benzyl ester (MON3) was synthesized and its ability to form complexes with Li+, Na+ and K+ cations was studied by ESI MS, H-1 and C-13 NMR, FT-IR and PM5 semiempirical methods. MON3 has been found to preferentially form complex with Na+ cations. The formation of stable complexes of 1: 1 stoichiometry up to cv = 70 V is indicated in the electrospray ionisation mass spectra. With increasing cone voltage value, the fragmentation of the respective complexes is detected and is connected primary with the dehydration process. The structures of the complexes are stabilized by intramolecular hydrogen bonds in which the OH groups are always involved. The structures of MON3 and its complexes with Li+, Na+ and K+ cations are visualized and discussed in detail. It is shown that in the structure of MON3 the oxygen atom of this C=O ester group is involved in very weak bifurcated hydrogen bonds with two hydroxyl groups. Within the complexes of MON3 with Li+ and K+ cations, this C=O ester group is not hydrogen bonded, whereas in the structure of MON3 with Na+ it can also coordinate this cation. Such a structure is, however, not dominant in acetonitrile solution. It is demonstrated that the formation of a pseudo-crown ring structure formed by MON3 prefers the complexation of Na+ cations. (c) 2006 Elsevier B.V. All rights reserved.
机译:合成了莫能菌素苄酯(MON3),并通过ESI MS,H-1和C-13 NMR,FT-IR和PM5半经验方法研究了其与Li +,Na +和K +阳离子形成络合物的能力。已经发现MON3优先与Na +阳离子形成络合物。在电喷雾电离质谱图中表明,化学计量比为1:1的稳定复合物的形成高达cv = 70V。随着锥电压值的增加,检测到各个配合物的碎裂,并且主要与脱水过程连接。配合物的结构通过始终涉及OH基团的分子内氢键来稳定。可视化并详细讨论了MON3的结构及其与Li +,Na +和K +阳离子的配合物。结果表明,在MON3的结构中,该C = O酯基的氧原子与带有两个羟基的非常弱的分叉氢键有关。在MON3与Li +和K +阳离子的配合物中,这个C = O酯基团不是氢键,而在MON3与Na +的结构中,它也可以配位该阳离子。然而,这种结构在乙腈溶液中不是主要的。事实表明,MON3形成的伪冠环结构更倾向于Na +阳离子的络合。 (c)2006 Elsevier B.V.保留所有权利。

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