Latex-coated polymeric monolithic ion-exchange stationary phases. 2. Micro-ion chromatography

被引:105
作者
Zakaria, P
Hutchinson, JP
Avdalovic, N
Liu, Y
Haddad, PR
机构
[1] Univ Tasmania, Sch Chem, Australian Ctr Res Separat Sci, Hobart, Tas 7001, Australia
[2] Dionex Chem Corp, Sunnyvale, CA 94088 USA
关键词
D O I
10.1021/ac048747l
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Latex-coated monolithic polymeric stationary phases are used for micro-ion chromatography (mu-IC) of inorganic anions. Monolithic columns were prepared by the in situ polymerization of butyl methacrylate, ethylene dimethacrylate, and 2-acrylamido-2-methyl-1-propanesulfonic acid within fused-silica capillaries of varying internal diameters. Introduction of ion-exchange sites was achieved by coating the anionic polymeric monolith with either Dionex AS10 or Dionex AS18 quaternary ammonium functionalized latex particles to give total ion-exchange capacities in the range 9-24 nequiv for a 30-cm column. The resultant mu-IC columns were used for the separation of anionic analytes using chloride or acetate as the eluent-competing ion and direct UV spectrophotometric detection at 195 nm or using hydroxide as the eluent-competing ion and suppressed or nonsuppressed contactless conductivity detection. Separation efficiencies of 13 000 plates/m were observed (for iodate), and separation efficiency was maintained for large increases in flow rate (up to 42 muL/min, corresponding to a linear flow velocity of 18.5 mm/s), enabling highly reproducible, rapid separations to be achieved (seven analyte anions in less than 2 min). Use of a hollow fiber micromembrane suppressor enabled effective suppression of hydroxide eluents over the range 0.5-5.0 mM, thereby permitting suppressed conductivity detection to be performed. However, the relatively large size of the suppressor resulted in reduced separation efficiencies (e.g., 5400 plates/m for iodate). Detection limits obtained with suppressed conductivity detection were in the range 0.4-1.2 muM.
引用
收藏
页码:417 / 423
页数:7
相关论文
共 37 条
[11]   Peptide mapping by reversed-phase high-performance liquid chromatography employing silica rod monoliths [J].
Hennessy, TP ;
Boysen, RI ;
Huber, MI ;
Unger, KK ;
Hearn, MTW .
JOURNAL OF CHROMATOGRAPHY A, 2003, 1009 (1-2) :15-28
[12]   Investigation of conditions allowing the synthesis of acrylamide-based monolithic microcolumns for capillary electrochromatography and of factors determining the retention of aromatic compounds on these stationary phases [J].
Hoegger, D ;
Freitag, R .
ELECTROPHORESIS, 2003, 24 (17) :2958-2972
[13]   Coupling of monolithic columns with sequential injection technique -: A new separation approach in flow methods [J].
Huclová, J ;
Satínsky, D ;
Karlícek, R .
ANALYTICA CHIMICA ACTA, 2003, 494 (1-2) :133-140
[14]   Latex-coated polymeric monolithic ion-exchange stationary phases. 1. Anion-exchange capillary electrochromatography and in-line sample preconcentration in capillary electrophoresis [J].
Hutchinson, JP ;
Zakaria, P ;
Bowiet, AR ;
Macka, M ;
Avdalovic, N ;
Haddad, PR .
ANALYTICAL CHEMISTRY, 2005, 77 (02) :407-416
[15]   Use of coupled open-tubular capillaries for in-line ion-exchange preconcentration of anions by capillary electrochromatography with elution by a transient isotachophoretic gradient [J].
Hutchinson, JP ;
Macka, M ;
Avdalovic, N ;
Haddad, PR .
JOURNAL OF CHROMATOGRAPHY A, 2004, 1039 (1-2) :187-192
[16]   Monolithic silica columns for high-efficiency separations by high-performance liquid chromatography [J].
Ishizuka, N ;
Kobayashi, H ;
Minakuchi, H ;
Nakanishi, K ;
Hirao, K ;
Hosoya, K ;
Ikegami, T ;
Tanaka, N .
JOURNAL OF CHROMATOGRAPHY A, 2002, 960 (1-2) :85-96
[17]   Performance of a monolithic silica column in a capillary under pressure-driven and electrodriven conditions [J].
Ishizuka, N ;
Minakuchi, H ;
Nakanishi, K ;
Soga, N ;
Nagayama, H ;
Hosoya, K ;
Tanaka, N .
ANALYTICAL CHEMISTRY, 2000, 72 (06) :1275-1280
[18]   Capillary electrochromatography in anion-exchange and normal-phase mode using monolithic stationary phases [J].
Lämmerhofer, M ;
Svec, F ;
Fréchet, JMJ ;
Lindner, W .
JOURNAL OF CHROMATOGRAPHY A, 2001, 925 (1-2) :265-277
[19]   A graphitized-carbon monolithic column [J].
Liang, CD ;
Dai, S ;
Guiochon, G .
ANALYTICAL CHEMISTRY, 2003, 75 (18) :4904-4912
[20]   Miniaturized movable contactless conductivity detection cell for capillary electrophoresis [J].
Macka, M ;
Hutchinson, J ;
Zemann, A ;
Zhang, SS ;
Haddad, PR .
ELECTROPHORESIS, 2003, 24 (12-13) :2144-2149