白城师范学院 理论计算中心,吉林 白城 137000
刘芳,姜春旭,杨晓翠, 等.α-丙氨酸及其金属配合物的旋光异构理论研究进展[J].武汉大学学报(理学版),2022,68(6):665-679. DOI:10.14188/j.1671-8836.2021.0107.
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收稿:2021-04-26,
纸质出版:2022-12-24
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刘芳,姜春旭,杨晓翠, 等.α-丙氨酸及其金属配合物的旋光异构理论研究进展[J].武汉大学学报(理学版),2022,68(6):665-679.
LIU Fang,JIANG Chunxu,YANG Xiaocui,et al.Progress in Theoretical Study on Optical Isomerism of α-Alanine and Its Metal Complexes [J].J Wuhan Univ (Nat Sci Ed),2022,68(6):665-679. DOI:10.14188/j.1671-8836.2021.0107(Ch).
刘芳,姜春旭,杨晓翠, 等.α-丙氨酸及其金属配合物的旋光异构理论研究进展[J].武汉大学学报(理学版),2022,68(6):665-679. DOI:10.14188/j.1671-8836.2021.0107
LIU Fang,JIANG Chunxu,YANG Xiaocui,et al.Progress in Theoretical Study on Optical Isomerism of α-Alanine and Its Metal Complexes [J].J Wuhan Univ (Nat Sci Ed),2022,68(6):665-679. DOI:10.14188/j.1671-8836.2021.0107(Ch). DOI:
氨基酸及其金属配合物旋光异构的理论研究,对实验上实现它们的手性转变及安全地用于生命体均有重要意义。本文综述了
α
-丙氨酸(
α
-Ala)在气相、水汽相、水液相和纳米限域环境下的旋光异构及羟基负离子(水分子簇)的催化作用;
α
-Ala与生命体必需的主族金属和过渡金属配合物在气相、水汽相和水液相下旋光异构。气相下
α
-Ala及其绝大多数的金属配合物不能消旋,只有个别的过渡金属配合物能缓慢消旋,纳米限域环境下的
α
-Ala不能消旋;水汽相下
α
-Ala及其金属配合物只能痕量或微量地消旋;水液相下
α
-Ala能少量地消旋,其金属配合物只能痕量、微量或少量地消旋;碱性水环境下
α
-Ala易消旋。本综述可望为深入研究氨基酸及其金属配合物的旋光异构提供理论参考。
The theoretical study on the optical isomerism of amino acids and their metal complexes is of great significance for realizing their chiral transition in experiments and for safely using them in living organisms. This paper reviews the optical isomerism of
α
-alanine (
α
-Ala) in gas phase
water-vapor phase
aqueous-liquid phase and nano confinement environment and the catalytic action of hydroxyl anion (water molecular cluster)
and summarizes the progress in optical isomerism of
α
-Ala with main group metals and transition metal complexes in gas
water-vapor and aqueous-liquid phases. In gas phase
α
-Ala and most of its metal complexes can not be racemized
while only a few metal complexes can be racemized slowly
and
α
-Ala can not be racemized in nano confinement environment. In water-vapor phase
trace and tiny quantities of
α
-Ala and its metal complexes can only be racemized; In aqueous-liquid phase
α
-Ala can be racemized in a small amount
and its metal complexes can only be racemized in a trace
tiny or small amount.
α
-Ala is easily racemized in alkaline aqueous solvents. It is expected that this review will provide valuable theoretical reference for further study of optical isomerism of amino acids and their metal complexes.
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