Acrylic-based high internal phase emulsion polymeric monolith for capillary electrochromatography

被引:49
作者
Tunc, Yeliz [1 ]
Golgelioglu, Cigdem [2 ]
Hasirci, Nesrin [3 ]
Ulubayram, Kezban [1 ]
Tuncel, Ali [2 ]
机构
[1] Hacettepe Univ, Fac Pharm, Dept Basic Pharmaceut Sci, TR-06100 Ankara, Turkey
[2] Hacettepe Univ, Dept Chem Engn, Fac Engn, TR-06532 Ankara, Turkey
[3] Middle E Tech Univ, Dept Chem, Fac Arts & Sci, TR-06531 Ankara, Turkey
关键词
Monolithic columns; PolyHIPE monoliths; Open-cell structure; Capillary electrochromatography; FUSED-SILICA CAPILLARIES; STATIONARY PHASES; SEPARATION MEDIA; COLUMNS; METHACRYLATE; ELECTROPHORESIS; CHROMATOGRAPHY;
D O I
10.1016/j.chroma.2010.01.020
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The use of high internal phase emulsion polymers (polyHIPEs) for CEC applications has remained relatively Unexplored. A few reports exist in the literature for the preparation of similar structures. In this study, polyHIPEs having high porosity, and interconnected open-cell structure, were introduced and evaluated as stationary phase for CEC. The polyHIPE monolithic columns were prepared by the in situ polymerization of isodecylacrylate (IDA) and divinylbenzene (DVB) in the continuous phase of a high internal phase emulsion (HIPE). Due to its well-defined polyHIPE structure with interconnected micron size spherical voids, the columns synthesized with different initiator concentrations were Successfully used for the separation of alkylbenzenes. Furthermore, the columns indicated a strong electroosmotic flow (EOF) without any additional EOF generating monomer probably due to the presence of ionizable sulfate groups coming from the water-soluble initiator used in the preparation of polyHIPE matrix. The best chromatographic performance in the separation of alkylbenzenes was achieved by using 70% ACN in the mobile phase with high column efficiency (up to 200000 plates/m). (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:1654 / 1659
页数:6
相关论文
共 28 条
[1]   Improvement of the long-term stability of polyimide-coated fused-silica capillaries used in capillary electrophoresis and capillary electrochromatography [J].
Baeuml, F ;
Welsch, T .
JOURNAL OF CHROMATOGRAPHY A, 2002, 961 (01) :35-44
[2]   Synthesis and characterization of porous glycidylmethacrylate-divinylbenzene monoliths using the high internal phase emulsion approach [J].
Barbetta, Andrea ;
Dentini, Mariella ;
Leandri, Lorenzo ;
Ferraris, Giovanni ;
Coletta, Alessandro ;
Bernabei, Manuele .
REACTIVE & FUNCTIONAL POLYMERS, 2009, 69 (09) :724-736
[3]   Development of acrylate-based monolithic stationary phases for electrochromatographic separations [J].
Barrioulet, MP ;
Delaunay-Bertoncini, N ;
Demesmay, C ;
Rocca, JL .
ELECTROPHORESIS, 2005, 26 (21) :4104-4115
[4]   Polymerised bicontinuous microemulsions as stationary phases for capillary electrochromatography [J].
Cameron, NR ;
Flook, KJ ;
Wren, SAC .
CHROMATOGRAPHIA, 2003, 57 (3-4) :203-206
[5]   Development and in situ synthesis of monolithic stationary phases for electrochromatographic separations [J].
Delaunay-Bertoncini, N ;
Demesmay, C ;
Rocca, JL .
ELECTROPHORESIS, 2004, 25 (18-19) :3204-3215
[6]  
Duong LTH, 2000, J PHARMACEUT BIOMED, V22, P879, DOI 10.1016/S0731-7085(00)00298-3
[7]   In-line application of electric field in capillary separation systems: Joule heating, pH and conductivity [J].
Eriksson, Bjoern O. ;
Skuland, Inger Lill ;
Marlin, Nicola D. ;
Andersson, Magnus B. O. ;
Blomberg, Lars G. .
TALANTA, 2008, 75 (01) :83-90
[8]  
Esquena J., 2006, Emulsions and emulsion stability, P245
[9]   Development of capillary electrochromatography with poly(styrene-divinylbenzene-vinylbenzenesulfonic acid) monolith as the stationary phase [J].
Huang, Hsi-Ya ;
Liu, Yen-Chen ;
Cheng, Yi-Jie .
JOURNAL OF CHROMATOGRAPHY A, 2008, 1190 (1-2) :263-270
[10]   Analyses of benzophenones by capillary electrochromatography using methacrylate ester-based monolithic columns [J].
Huang, HY ;
Chiu, CW ;
Huang, IY ;
Lee, S .
JOURNAL OF CHROMATOGRAPHY A, 2005, 1089 (1-2) :250-257