DONG Lirong, GAO Feng, TONG Huai, et al. Optical isomerism and damage of α alanine confined in MOR zeolite induced by hydroxyl radicals in water environment[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2019,58(4):78-89.
DONG Lirong, GAO Feng, TONG Huai, et al. Optical isomerism and damage of α alanine confined in MOR zeolite induced by hydroxyl radicals in water environment[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2019,58(4):78-89. DOI: 10.13471/j.cnki.acta.snus.2019.04.008.
Ala 损伤的优势通道是a,决速步能垒是25.3 kJ/mol,水溶剂效应使该能垒降到22.1 kJ/mol。结果表明:水环境下羟自由基的存在可使MOR分子筛内的
α-
Ala 旋光异构与损伤同时发生,在竞争中损伤过程具有明显的优势;MOR分子筛的限域改变了
α-
Ala 的异构机理并起到了较好助催化作用。
Abstract
The title reaction was researched in the theory by ONIOM method conbined with quantum mechanics and molecular mechanics
and the SMD model method based on self consistent reaction field (SCRF) theory. The study showed that there were two channels a
b in the title reaction. In channel a the hydroxyl radical water molecule cluster acted with
α
-H and amino nitrogen through hydrogen bond to form substrate
and in channel b that acted with
α
-H and carbonyl oxygen through hydrogen bond to form substrate. Calculations of potential energy surface showed that with hydroxyl radical and water clusters as the proton transfer media
optical isomerism of α-Ala was induced by water molecules pulling
α
-H
and in water vapor environment
channel a was the dominant one and the energy barrier of the rate-determining step was 136.1 kJ/mol
but in water liquid environment
the dominant channel was b
the intrinsic barrier of transition state was 78.1 kJ/mol. The dominant channel where
α-
Ala damage induced by the
α
-H abstraction of hydroxyl radical assisted with water molecule cluster was a
the energy barrier of the rate-determining step was 25.3 kJ/mol
which was reduced to 22.1 kJ/mol by water solvent effect. The results showed that hydroxyl radical can make optical isomerism and the damage of
α-
Ala occurs simultaneously in water liquid phase environment
and the damage had obvious advantage in competition. The confinement effect of MOR zeolite changed optical isomerism mechanism of