Duddeck Helmut, Gómez Edison Díaz
Leibniz University Hannover, Institute of Organic Chemistry, Schneiderberg 1B, D-30167 Hannover, Germany.
Chirality. 2009 Jan;21(1):51-68. doi: 10.1002/chir.20605.
Enantiomers of chiral ethers and acetals are notoriously difficult to differentiate because their reactivity is low and they are poor donors to any Lewis acid or metal ion. As an exception, epoxides are somewhat better donors. This review describes the properties of ethers, explains NMR methods for their chiral recognition and describes successful examples of ether differentiation. The majority of literature reports deals with chiral lanthanide shift reagents and dirhodium tetracarboxylate complexes, which were used as enantiopure auxiliaries to create diastereomeric adducts with dispersed (1)H and (13)C NMR signals. The various methods are compared as to which is best suited for which purpose.
手性醚和缩醛的对映体极难区分,因为它们的反应活性低,且作为给体与任何路易斯酸或金属离子的作用都较弱。作为一个例外,环氧化合物作为给体的能力稍强一些。本综述描述了醚的性质,解释了用于其手性识别的核磁共振方法,并介绍了醚区分的成功实例。大多数文献报道涉及手性镧系位移试剂和四羧酸二铑配合物,它们被用作对映体纯助剂,以生成具有分散的氢-1和碳-13核磁共振信号的非对映体加合物。对各种方法在何种用途上最适用进行了比较。