Chemiluminescence detection in integrated post-separation reactors for microchip-based capillary electrophoresis and affinity electrophoresis
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Microchip capillary electrophoresis using on-line chemiluminescence detection
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On-line monitoring of chromium(III) using a fast micromachined mixer/reactor and chemiluminescence detection
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Micelle-enhanced lucigenin chemiluminescence for the determination of catecholamines
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Enhancement of lucigenin chemiluminescence by peroxidate oxidation of adrenaline in cationic surfactants
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Enhanced chemiluminescence of lucigenin with epinephrine in cationic surfactant micelles containing peroxidate
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Total free catecholamines assay by identification of its two functional groups and micro-flow injection chemiluminescence
Nozaki R, Kawamoto H and Moriyama H. Total free catecholamines assay by identification of its two functional groups and micro-flow injection chemiluminescence. Luminescence 1999; 14: 369-374.
Determination of catecholamines and related compounds by capillary electrophoresis with postcolumn terbium complextion and sensitized luminescence detection
Zhu R and Kok WT. Determination of catecholamines and related compounds by capillary electrophoresis with postcolumn terbium complextion and sensitized luminescence detection. Anal. Chem. 1997; 69: 4010-4016.
Chemiluminescent assay for catecholamines by the generation of hydrogen peroxide in basic solution and the use of isoluminol-microperoxidase
Arakawa H, Kanemitsu M and Maeda M. Chemiluminescent assay for catecholamines by the generation of hydrogen peroxide in basic solution and the use of isoluminol-microperoxidase. Anal. Sci. 1999; 15: 1269-1272.
Quantitative analysis of molecular interaction in a microfluidic channel: The T-sensor
Kamholz AE, Weigl BH, Finlayson BA and Yager P. Quantitative analysis of molecular interaction in a microfluidic channel: the T-sensor. Anal. Chem. 1999; 71: 5340-5347.