生物相容性
催化作用
离子液体
绿色化学
共晶体系
化学
有机化学
糖
材料科学
生化工程
纳米技术
工程类
合金
作者
Monday Abel Otache,Remy Ukachukwu Duru,Ozioma Achugasim,J. O. Abayeh
标识
DOI:10.1134/s2070050422010068
摘要
Nowadays, sugar esters (SEs) have become the focus of researchers due to their biocompatibility and extensive industrial applications as surfactants. This trend provides new methods and opportunities for the development of green synthetic chemistry. Taking the above into consideration, a critical review presented in this work emphasized the efficiency of catalyzing the synthesis of SEs with minimal hazardous by-products. Catalytic media have been employed with various impacts involving chemical, biological, and other catalytic materials. Chemical methods have been reported to show limitations in terms of preparation and biocompatibility. To solve these shortcomings, therefore, other technologies have been adopted: ionic liquids (eutectic solvents), chemo-enzymatic systems and chemo-enzymatic systems on a catalytic surface. The use of chemo-enzymatic systems on catalytic surfaces has proved to be suitable in solving biocompatibility and stability problems and correspondingly increasing the yield of esters formed. Therefore, finding an improved catalytic surface, and the sustainable optimal reaction conditions for enzymes will be vital to improving sugar ester conversion. This study highlights the different catalytic advances employed in the esterification of SEs.
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