Enantioselective Synthesis Of D-Lactic Acid Via Chemocatalysis Using Mgo: Experimental And Molecular-Based Rationalization Of The Triose'S Reactivity And Preliminary Insights With Raw Biomass

APPLIED CATALYSIS B-ENVIRONMENTAL(2021)

引用 36|浏览4
暂无评分
摘要
The widespread applications of D-lactic acid (D-LaA) significantly prompted the research of its synthesis from renewable biomass via chemo-catalysis. Herein, we developed a robust but simple MgO-D-LaA system without using extra chiral ligand, achieving the highest LaA yield similar to 90 % with similar to 75 % enantiomeric excess (ee) value to D-LaA from dihydroxyacetone, glyceraldehyde, and pyruvaldehyde. The experimental and quantum chemistry computational results revealed that MgO and D-LaA presented a pronounced synergetic effect, where pre-added D-LaA provided suitable pH to promote [Mg(OH)(H2O)(3)](+) formation, acting as the active species to facilitate the production of pyruvaldehyde, from dihydroxyacetone and glyceraldehyde. D-LaA interacted with Mg-II species forming a chiral pocket-like complex, Mg-II-2(D-Lactate), which combined to pyruvaldehyde giving the transition state with lower strain energy due to the smaller steric repulsion, thus enabling 1, 2-H shift of hydrated-pyruvaldehyde preferentially via si-face attack, leading to D-LaA. The catalytic system could also be applied for the conversion of raw corn stover.
更多
查看译文
关键词
Trioses, D-Lactic acid, Magnesium oxide, Biomass conversion, DFT study
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要