Styrene-N-phenylacrylamide co-polymer modified silica monolith particles with an optimized mixing ratio of monomers as a new stationary phase for the separation of peptides in high performance liquid chromatography

  • Sun, Genlin
  • Kim, Jeong Soo
  • Kim, Yune Sung
  • An, Hyun Joo
  • Cheong, Won Jo
Citations

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초록

A stationary phase was prepared by chemical derivatization of the support particles with a layer of copolymer composed of styrene and N-phenyl acrylamide. Silicamonolith particles of ca. 2.6 mu m (volume-based average) have been prepared as the support particles by sol-gel reaction followed by differential sedimentation. The particles were reacted with 3-chloropropyl trimethoxysilane followed by sodium diethyldithiocarbamate to introduce an initiator moiety. Then, the copolymer layer was immobilized via reversible addition-fragmentation transfer polymerization. The resultant phase was packed in glass-lined stainless-steel micro-columns (1 x 150 mm) and evaluated for the separation of a mixture composed of five peptides (Trp-Gly, ThrTyr- Ser, angiotensin I, isotocin and bradykinin). The effect of monomer mixing ratio (styrene versus N-phenyl acrylamide) on the chromatographic separation efficiency of the stationary phase was examined. A number of theoretical plates (N) as high as 33 600 plates/column (224 000 plates/m, 4.46 mu mplate height) was achieved using the column packed with the optimized stationary phase. The column-to-column reproducibility based on three columns packed with three different batches of stationary phase was found satisfactory in separation efficiency, retention factor, and asymmetry factor.

키워드

mixed-mode phasepeptidesRAFT polymerizationsilica monolith particlesstationary phasesMIXED-MODE CHROMATOGRAPHYCORE-SHELLTECHNOLOGY
제목
Styrene-N-phenylacrylamide co-polymer modified silica monolith particles with an optimized mixing ratio of monomers as a new stationary phase for the separation of peptides in high performance liquid chromatography
저자
Sun, GenlinKim, Jeong SooKim, Yune SungAn, Hyun JooCheong, Won Jo
DOI
10.1002/jssc.201900215
발행일
2019-08
유형
Article
저널명
Journal of Separation Science
42
16
페이지
2612 ~ 2620