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Benign tunable solvents for improved processing of pharmaceutically relevant products and catalysts.

机译:良性可调溶剂,可改善药物相关产品和催化剂的加工过程。

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Sustainable technologies are vital to reducing the environmental impact of chemical enterprises. Solvents are often seen as just a medium in which a reaction takes place; however they can also play a dominant role in the overall toxicity of a typical pharmaceutical/fine chemicals batch chemical operation. Further, careful solvent selection for a reaction may also lead to more facile separation and purification of products, thus reducing the overall cost of a chemical process.; This thesis presents an environmentally benign processing technique for sustainable biocatalytic reactions coupled with facile built-in separation. An organic aqueous tunable solvent (OATS) system allows access to a hydrophobic substrate which is transformed with a homogeneous enzymatic catalyst in a single liquid phase. Subsequent CO, addition produces a biphasic mixture where the hydrophobic product partitions preferentially into the organic rich phase for separation while the hydrophilic enzyme catalyst partitions into the aqueous rich phase, where it is recyclable. Processing parameters in OATS systems are discussed and an overall product recovery of 80% is observed after six reaction cycles. Additionally, greater than 99% enantiomeric excess (ee) is shown for catalyzed hydrolysis of rac-1-phenylethyl acetate with Candida antarctica lipase B (CAL B) both before and after CO2-induced separation.
机译:可持续技术对于减少化工企业的环境影响至关重要。溶剂通常被视为反应发生的媒介。但是,它们也可以在典型的制药/精细化学品批量化学操作的总体毒性中起主要作用。此外,仔细选择用于反应的溶剂还可以导致更容易地分离和纯化产物,从而降低化学过程的总成本。本文提出了一种环境友好的加工技术,用于可持续的生物催化反应以及便捷的内置分离。有机水性可调谐溶剂(OATS)系统允许进入疏水性底物,该底物在单一液相中被均相酶催化剂转化。随后的CO加成产生两相混合物,其中疏水产物优先分配到富有机相中进行分离,而亲水酶催化剂分配到富水相中,在此可回收。讨论了OATS系统中的工艺参数,在六个反应周期后观察到80%的总产物回收率。另外,在CO 2诱导的分离之前和之后,用Candida antarctica脂肪酶B(CAL B)催化的乙酸rac-1-苯基乙酸乙酯的水解,显示大于99%的对映体过量(ee)。

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