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用于氟相分离应用的氟相探针分子的合成与固态结构

Synthesis and Solid State Structure of Fluorous Probe Molecules for Fluorous Separation Applications.

作者信息

Lehmler H-J, Telu S, Vyas S M, Shaikh N S, Rankin S E, Knutson B L, Parkin S

机构信息

Department of Occupational and Environmental Health, University of Iowa, College of Public Health, Iowa City, IA 52242, USA.

出版信息

Tetrahedron. 2010 Apr 3;66(14):2561-2569. doi: 10.1016/j.tet.2010.02.018.

Abstract

A series of colored hydrocarbon and fluorocarbon tagged 1-fluoro-4-alkylamino-anthraquinones and 1,4-bis-alkylamino-anthraquinone probe molecules were synthesized from a (fluorinated) alkyl amine and 1,4-difluoroanthraquinone to aid in the development of fluorous separation applications. The anthraquinones displayed stacking of the anthraquinone tricycle and interdigitation of the (fluorinated) alkyl chains in the solid state. Furthermore, intramolecular N-H···O hydrogen bonds forced the hydrocarbon and fluorocarbon tags into a conformation pointing away from the anthraquinone tricycle, with the angle of the tricycle plane normal and the main (fluorinated) alkyl vector ranging from 1 to 39°. Separation of the probe molecules on fluorous silica gel showed that the degree of fluorination of the probe molecules plays only a minor role with most eluents (e.g., hexane-ethyl acetate and methyl nonafluorobutyl ethers-ethyl acetate). However, toluene as eluent caused a pronounced separation by degree of fluorination for fluorocarbon, but not hydrocarbon tagged probe molecules on both silica gel and fluorous silica gel. These studies suggest that hydrocarbon and fluorocarbon tagged anthraquinones are useful probe molecules for the development of laboratory scale fluorous separation applications.

摘要

一系列带有彩色烃基和氟碳基标记的1-氟-4-烷基氨基蒽醌和1,4-双烷基氨基蒽醌探针分子由(氟化)烷基胺和1,4-二氟蒽醌合成,以助力含氟分离应用的开发。蒽醌在固态时呈现出蒽醌三环的堆积以及(氟化)烷基链的相互交错。此外,分子内N-H···O氢键迫使烃基和氟碳基标记处于远离蒽醌三环的构象,三环平面法线与主要(氟化)烷基向量的夹角范围为1°至39°。探针分子在含氟硅胶上的分离表明,对于大多数洗脱剂(如己烷 - 乙酸乙酯和甲基九氟丁基醚 - 乙酸乙酯),探针分子的氟化程度仅起次要作用。然而,以甲苯作为洗脱剂时,对于含氟碳基而非含烃基标记的探针分子,在硅胶和含氟硅胶上都会因氟化程度导致明显的分离。这些研究表明,带有烃基和氟碳基标记的蒽醌是开发实验室规模含氟分离应用的有用探针分子。

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