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Separation of branched polystyrene by comprehensive two-dimensional liquid chromatography SCIE SCOPUS

Title
Separation of branched polystyrene by comprehensive two-dimensional liquid chromatography
Authors
Im, KKim, YChang, TLee, KChoi, N
Date Issued
2006-01-27
Publisher
ELSEVIER SCIENCE BV
Abstract
Branched polystyrenes (PS) featuring a bivariate distribution in the molecular weight and in the number of branches were characterized by comprehensive two-dimensional liquid chromatography (2D-LC). The branched PS were prepared by anionic polymerization using n-butyl Li as an initiator and a subsequent linking reaction with p-(chlorodimethylsilyl)styrene (CDMSS). The n-butyl Li initiator yields polystyryl anions with broad molecular weight distribution (MWD) and the linking reaction with CDMSS yields branched PS with different number of branches. For the first dimension (1st-D) separation, reversed-phase temperature gradient interaction chromatography (RP-TGIC) was employed to separate the branched polymer according to mainly the molecular weight. In the second dimension (2nd-D) separation, the effluents from the RP-TGIC separation are subjected to liquid chromatography at chromatographic critical conditions (LCCC), in which the separation was carried out at the critical condition of linear homo-PS to separate the branched PS in terms of the number of branches. The 2D-LC resolution of RP-TGIC x LCCC combination worked better than the common LCCC x size-exclusion chromatography (SEC) configuration due to the higher resolution of RP-TGIC in molecular weight than SEC. Furthermore, by virtue of using the same eluent in RP-TGIC and LCCC (only the column temperature is different), RP-TGIC x LCCC separation is free from possible 'break through' and large system peak problems. This type of 2D-LC separation could be utilized efficiently for the analysis of branched polymers with branching units distinguishable by LC separation. (c) 2005 Elsevier B.V. All rights reserved.
Keywords
two-dimensional liquid chromatography; branched polymer; molecular weight distribution; branch number distribution; functionality; temperature gradient interaction chromatography; liquid chromatography at the critical condition; MALDI-TOF MS; GRADIENT INTERACTION CHROMATOGRAPHY; SIZE-EXCLUSION CHROMATOGRAPHY; MOLECULAR-WEIGHT DISTRIBUTION; 4-MIKTOARM STAR COPOLYMER; ANIONIC-POLYMERIZATION; SYNTHETIC-POLYMERS; LIGHT-SCATTERING; COMPLEX POLYMERS; RESOLUTION; SYSTEMS
URI
https://oasis.postech.ac.kr/handle/2014.oak/24223
DOI
10.1016/j.chroma.2005.11.050
ISSN
0021-9673
Article Type
Article
Citation
JOURNAL OF CHROMATOGRAPHY A, vol. 1103, no. 2, page. 235 - 242, 2006-01-27
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장태현CHANG, TAIHYUN
Div of Advanced Materials Science
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