QIAO Chaoyang, YAN Hongyan, SUN Yongqing, et al. Chiral enantiomer transition of Asp molecules catalyzed by hydroxyl ion and role of proton in water liquid phase environment#br#
#br#[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2020,59(1):144-153.
QIAO Chaoyang, YAN Hongyan, SUN Yongqing, et al. Chiral enantiomer transition of Asp molecules catalyzed by hydroxyl ion and role of proton in water liquid phase environment#br#
#br#[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2020,59(1):144-153. DOI: 10.13471/j.cnki.jsysusse.2020.01.017.
Using the dispersion correction density functional ωB97X-D method
the MP2 method of perturbation theory and the SMD model method of selfconsistent reaction field
the title reaction of two stable conformations(
Asp_1
and Asp_2) of Asp was investigated. The study of reaction channel and potential energy surface showed that the chiral enantiomer transition was realized by a series of Asp transition states of Hatom abstraction of hydroxyl ion(water clusters) and α-carbon
as well as the rotation of αcarboxy hydroxyl
β-carboxy hydroxyl
β-carboxyl and R-group. The intrinsic energy barrier of the rate-determining step of optical isomerization of
Asp_1
and
Asp_2
induced by α-H abstraction of hydroxyl ion and H abstraction of water molecule of αcarbon was about 27.0 kJ/mol
and the corresponding intrinsic energy barriers induced by H-atom abstraction of hydroxyl ion assisted with water molecule and H-atom abstraction of two water molecule of α-carbon were about 34.0 and 40.0 kJ/mol
respectively. It could accelerate the process of Asp chiral transition that proton attacks the α-carbon of intermediate carbon anion.