The Aldo-keto Reductase Superfamily and Its Application for Chiral Alcohol Asymmetric Synthesis 醛酮还原酶及其在不对称合成手性醇中的应用
Stereochemistry deals with stereoisomers and with asymmetric synthesis. 立体化学研究立体异构体以及不对称合成法。
Abstract: the recent progress is kinetic resolution and its applications in asymmetric synthesis are reviewed. 文摘:综述了光活性化合物动力学拆分法的研究进展及其在不对称合成中的应用。
Asymmetric Synthesis of γ-Unsaturated Amino Acids Using Chiral Auxiliary 手性助剂法不对称合成γ-不饱和氨基酸
Based on the asymmetric formation of chemical bond, the recent progress in the asymmetric synthesis of α-amino acids has been reviewed. 着重从不对称反应形成化学键的角度出发,综述了α-氨基酸不对称合成的最新进展。
Study on Coimmobilization of Lignin Peroxidase and Glyoxal Oxidase and Their Application in Asymmetric Synthesis; The Study of the Glyoxal Synthesized by Acetaldehyde under Nitric Acid 木素过氧化物酶和乙二醛氧化酶的共固定化及在手性合成中的应用乙醛硝酸氧化制备乙二醛的工艺研究
Optically active polymers, for its special chiral structure, can be used in asymmetric synthesis. 旋光性高分子在结构上具有一定的空间特异性,因而可以有多种应用。
According to different structure types this paper reviews the progress of all kinds of organocatalyst in catalytic feature, mechanism and application to asymmetric synthesis. 根据不同结构类型综述了近几年来各种有机催化剂的特点、机理及其在不对称合成中的应用研究进展。
Asymmetric Synthesis of Functionalized Chiral Propargylic Alcohols and Application in Total Synthesis of Insect Pheromone 官能团化手性炔丙醇的不对称合成研究及其在昆虫信息素不对称全合成中的应用
Carbohydrate, with multi-functional groups and chiral centers in one small molecule, is inexpensive and can be converted into efficient chiral auxiliary for controlling asymmetric synthesis. 糖作为一类具有多官能团、多手性中心、廉价易得的手性小分子可以很方便地作为手性助剂用于不对称合成。
New methods for asymmetric synthesis of pinacol are reviewed, the catalytic effects and stereoselectivity with various catalytic systems are discussed in this paper. 综述了近年来不同催化体系的不对称合成呐醇的方法,并总结了不同的催化效率和对映选择性的差异。
Asymmetric synthesis: Chemical reaction by which unequal amounts of two product isomers are formed. 不对称合成法:在化合物中形成两种不等数量的同分异构体的化学反应。
Catalytic asymmetric synthesis is a hot field in modern organic synthesis, which creates good fortunes to enantiomerically pure chiral drugs and other materials. 不对称催化合成是当今有机化学的前沿领域之一,为制备对映体纯的手性药物和手性材料提供了崭新的机遇。
The alternatives of asymmetric synthesis or kinetic resolution included: dynamic kinetic resolution, deracemisation and enantioconvergent transformations. 有动态动力学拆分、去消旋化和对映会聚转化等。
Theoretical Study on the Enamine-Catalyzed Asymmetric Synthesis Reaction 烯胺催化不对称合成反应的理论研究
Tartaric acid derivatives have been widely used in enantioseparation and asymmetric synthesis. 酒石酸衍生物在对映体拆分和不对称合成中得到广泛应用。
Progress on the Asymmetric Synthesis of Chiral Amino Acid and its Derivatives 手性氨基酸及其衍生物不对称合成的研究进展
The organometallic compounds are organic reagents in common use for the asymmetric synthesis. 金属有机化合物是不对称合成中常用的有机试剂。
This paper introduced organic metallic reagent of the asymmetric synthesis. 本文综述了有机金属试剂在不对称有机合成中的应用。
The stereochemistry of double asymmetric synthesis, based on Michael reaction example, are discussed. 对双重不对称合成的立体化学,以Michael反应为例进行了讨论。
Catalytic asymmetric synthesis by means of interaction between chiral ligands and substrates has been discussed. 讨论了手性配体和底物之间的相互作用及其在对映选择催化中的应用。
The Hot Spots Asymmetric synthesis is the popular and forward position in the study of the organic chemistry today. 不对称合成是当前有机化学研究的热点和前沿。
The asymmetric synthesis of mandelic acid in the presence of a chiral phase transfer catalyst was also studied. 本文还探讨了手性相转移催化条件下扁桃酸异构体的不对称合成。
The application of modified heterogeneous chiral catalysts in asymmetric synthesis is described in this review. 本文评述了修饰型多相手性催化剂在不对称合成中的应用。
The chiral ammonium salts have been used as phase transfer catalysts for asymmetric synthesis. 本文报导了在十种手性铵盐催化下芳醛和氯仿的不对称诱导反应。
In the present review, we describe the asymmetric synthesis via the reactions of chiral crystals of achiral molecules. 本文将综述通过非手性分子形成的手性晶体的固相反应进行的绝对不对称合成。
It summarized the development of asymmetric synthesis and the latest studies of phase transfer catalyst; 本论文主要工作包括以下几个方面:1、综述了不对称合成的发展历程及相转移催化剂的进展和最新研究成果;
These ligands perform high activity in asymmetric synthesis. 这类化合物在催化不对称合成反应中表现出了很高的活性。
Study on stoichiometric asymmetric synthesis and catalytic asymmetric reaction has become a focus of organic chemistry. 目前,有关化学计量的不对称合成和不对称催化反应的研究成为有机化学领域的研究热点之一。
With the development of asymmetric synthesis compounds, biocatalysis has development the hot spot and focal point of research. 随着人们对不对称合成手性化合物的深入研究,生物不对称加氢发展为现代研究的热点和焦点。