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电喷雾电离会产生气相结构还是液相结构?

Does electrospray ionization produce gas-phase or liquid-phase structures?

作者信息

Tian Zhixin, Kass Steven R

机构信息

Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

J Am Chem Soc. 2008 Aug 20;130(33):10842-3. doi: 10.1021/ja802088u. Epub 2008 Jul 29.

Abstract

Electrospray ionization of tyrosine from a 3:1 (v:v) CH3OH/H2O solution is found to afford an M - H ion which is a 70:30 mixture of phenoxide and carboxylate ions. This corresponds to the gas-phase equilibrium composition and not the liquid-phase proportions. In contrast, the carboxylate is produced as the dominant ion (approximately 95%) from anhydrous CH3CN and CH3CN/H2O mixtures. The addition of small amounts of CH3OH to the solvent, however, convert the M - H ion back into the gas-phase isomeric ratio. The isomeric structure therefore depends on the solvent system from which an ion is sprayed.

摘要

研究发现,从3:1(体积比)的甲醇/水溶液中对酪氨酸进行电喷雾电离,会产生一个M - H离子,该离子是苯氧离子和羧酸根离子的70:30混合物。这对应于气相平衡组成,而非液相比例。相比之下,在无水乙腈和乙腈/水混合物中,羧酸根离子作为主要离子产生(约95%)。然而,向溶剂中添加少量甲醇,会使M - H离子恢复到气相异构体比例。因此,异构体结构取决于离子所喷射的溶剂体系。

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