[Preparation of L-phenylalanine chiral ligand-exchange chromatographic stationary phase by atom transfer radical polymerization and resolution of racemates]

Se Pu. 2011 Sep;29(9):918-22.
[Article in Chinese]

Abstract

A novel stationary phase was synthesized for chiral ligand-exchange chromatography via atom transfer radical polymerization (ATRP). Glycidyl methacrylate (GMA) was grafted onto the surface of the silica by ATRP using bromoisobutyryl bromide as an initiator, and the organic metal compound formed in the CuCl/2,2'-bipyridine(Bpy) system as a catalyst at room temperature. The chiral stationary phase was then synthesized by grafting L-phenylalanine on the surface of the silica. The stationary phase was characterized by means of elementary analysis and evaluated in detail to determine its separability. The amount of L-phenylalanine on the surface of silica was calculated to be 4.32 mg/m2. The results showed that the good enantioseparations of some DL-amino acids were obtained using ligand-exchange chromatography on the synthesized chiral stationary phase (50 degrees C) with 0.05 mol/L KH2PO4 and 0.1 mmol/L Cu(Ac)2 solution (pH 4.5) as the mobile phase at a flow rate of 1.0 mL/min and a wavelength of 223 nm. The influences of the mobile phase pH, concentration of Cu (II), and temperature of column on the resolution of DL-amino acids by ligand-exchange chromatography were investigated. The results showed that these conditions could affect the resolution of racemates. Compared with the column prepared by radical method using L-phenylalanine directly bonded onto the surface of the silica, the synthesized stationary phase showed a better separation ability, and the DL-aspartic acids and DL-asparagines could be separated at baseline.

Publication types

  • English Abstract
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Asparagine / chemistry
  • Asparagine / isolation & purification
  • Aspartic Acid / chemistry
  • Aspartic Acid / isolation & purification
  • Chromatography, Ion Exchange / instrumentation*
  • Chromatography, Ion Exchange / methods
  • Ion Exchange Resins / chemical synthesis*
  • Ion Exchange Resins / chemistry
  • Ligands
  • Phenylalanine / chemistry*
  • Polymerization
  • Stereoisomerism

Substances

  • Ion Exchange Resins
  • Ligands
  • Aspartic Acid
  • Phenylalanine
  • Asparagine