Mandhapati Appi Reddy, Kato Takayuki, Matsushita Takahiko, Ksebati Bashar, Vasella Andrea, Böttger Erik C, Crich David
Department of Chemistry, Wayne State University , Detroit, Michigan 48202, United States.
J Org Chem. 2015 Feb 6;80(3):1754-63. doi: 10.1021/jo502677a. Epub 2015 Jan 20.
The synthesis of a series of α-trifluoromethylcyclohexanols and analogous trimethylsilyl ethers by addition of the Ruppert-Prakash reagent to substituted cyclohexanones is presented. A method for the assignment of configuration of such compounds, of related α-trifluoromethylcyclohexylamines and of quaternary trifluoromethyl-substituted carbons is described based on the determination of the (3)J(CH) coupling constant between the fluorine-decoupled (13)CF3 resonance and the vicinal hydrogens. This method is dubbed fluorine-decoupled carbon spectroscopy and abbreviated FDCS. The method is also applied to the configurational assignment of substances bearing mono-, di-, and perfluoroalkyl rather than trifluoromethyl groups. The configuration of all substances was verified by either (19)F-(1)H heteronuclear Overhauser spectroscopy (HOESY) or X-ray crystallography. The relative merits of FDCS and HOESY are compared and contrasted. (2)J(CH), (3)J(CH), and (4)J(CH) coupling constants to (19)F decoupled CF3 groups in alkenes and arenes have also been determined and should prove to be useful in the structural assignment of trifluoromethylated alkenes and arenes.
本文介绍了通过向取代环己酮中加入鲁珀特-普拉卡什试剂来合成一系列α-三氟甲基环己醇及类似的三甲基硅醚。基于测定氟去耦(13)CF3共振与相邻氢之间的(3)J(CH)耦合常数,描述了一种用于确定此类化合物、相关α-三氟甲基环己胺及季铵化三氟甲基取代碳的构型的方法。该方法被称为氟去耦碳光谱法,简称为FDCS。该方法还应用于带有单氟、二氟和全氟烷基而非三氟甲基基团的物质的构型确定。所有物质的构型均通过(19)F-(1)H异核Overhauser光谱法(HOESY)或X射线晶体学进行了验证。比较并对比了FDCS和HOESY的相对优缺点。还测定了烯烃和芳烃中与(19)F去耦CF3基团的(2)J(CH)、(3)J(CH)和(4)J(CH)耦合常数,这些常数在三氟甲基化烯烃和芳烃的结构确定中应会很有用。