Enantioselective separation of R,S-PHENYLSUCCINIC ACID (cas 10424-29-0) by biphasic recognition chiral extraction
-
Add time:08/02/2019 Source:sciencedirect.com
A new process has been developed to separate phenylsuccinic acid (H2A) enantiomers, based on the oppositely preferential recognition of hydrophobic and hydrophilic chiral selectors in organic and aqueous phases, respectively, which is named as biphasic recognition chiral extraction (BRCE). BRCE system is established by adding hydrophobic l-iso-butyl tartrate in organic phase and hydrophilic β-cyclodextrin (β-CD) derivative in aqueous phase, which preferentially recognize S-H2A and R-H2A, respectively. The studies performed involve two enantioselective extractions in a biphasic system, where H2A enantiomers form four complexes with β-CD derivative in aqueous phase and l-iso-butyl tartrate in organic phase, respectively. Here it is shown that the efficiency of the extraction depends, often strongly, on a number of process variables, including the types of organic solvents and β-CD derivatives, iso-butyl tartrate configurations, the concentrations of the extractants and H2A enantiomers, pH and temperature. Phase-equilibria in BRCE systems is governed by the complex chemical equilibria in both the organic and aqueous phases. By changing the monophasic recognition chiral extraction (MRCE) system into BRCE system, the enantioselectivity increases from 1.501 to 2.862. The maximum enantioselectivity for H2A enantiomers is obtained at pH≤2.5 and the ratio of 2:1 of [l-(+)-iso-butyl tartrate] to [HP-β-CD]. The experimental results show that BRCE is of much stronger chiral separation ability than MRCE, which is due to utilization of the separation abilities of both tartrate and β-CD derivative. It may be very helpful to optimize the extraction systems and realize the large-scale production of pure enantiomers.
We also recommend Trading Suppliers and Manufacturers of PHENYLSUCCINIC ACID (cas 10424-29-0). Pls Click Website Link as below: cas 10424-29-0 suppliers
Prev:Constructions of two photoluminescent 3D coordination polymers comprising of hydroxide-bridged cadmium chain and polynuclear cadmium macrocycle using PHENYLSUCCINIC ACID (cas 10424-29-0)
Next:Solvothermal syntheses and crystal structures of new Cu(II) complexes with PHENYLSUCCINIC ACID (cas 10424-29-0)) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Soft drugs—XIV. Synthesis and anticholinergic activity of soft phenylsuccinic analogs of methatropine08/09/2019
- Influence of pH on enantioselective extraction of aromatic acid enantiomers in centrifugal contactor separators: Experiments and simulation08/08/2019
- Efficient enantioseparation of PHENYLSUCCINIC ACID (cas 10424-29-0) enantiomers by aqueous two-phase system-based biphasic recognition chiral extraction: Phase behaviors and distribution experiments08/07/2019
- Surface-enhanced Raman scattering and the adsorption behavior of (RS)-PHENYLSUCCINIC ACID (cas 10424-29-0)08/06/2019
- Enantioselective extraction of PHENYLSUCCINIC ACID (cas 10424-29-0) in aqueous two-phase systems based on acetone and β-cyclodextrin derivative: Modeling and optimization through response surface methodology08/05/2019
- Enantioseparation of PHENYLSUCCINIC ACID (cas 10424-29-0) by high speed counter-current chromatography using hydroxypropyl-β-cyclodextrin as chiral selector08/04/2019
- Solvothermal syntheses and crystal structures of new Cu(II) complexes with PHENYLSUCCINIC ACID (cas 10424-29-0)08/03/2019
- Constructions of two photoluminescent 3D coordination polymers comprising of hydroxide-bridged cadmium chain and polynuclear cadmium macrocycle using PHENYLSUCCINIC ACID (cas 10424-29-0)08/01/2019
- Equilibrium Studies on Liquid-Liquid Reactive Extraction of PHENYLSUCCINIC ACID (cas 10424-29-0) Enantiomers Using Hydrophilic β-CD Derivatives Extractants07/31/2019
-
Health and Chemical more >


