A new approach for the detection of a nonfluorescent compound by CE-resonance Raman spectroscopy based on the sweeping-MEKC mode

C. H. Tsai Chih-Hsin, Po Han Cha, Cheng Huang Lin, Ta Chau Chang, Chih Ta Chia

研究成果: 雜誌貢獻文章

17 引文 (Scopus)

摘要

A CE-resonance Raman spectroscopy (CE-RRS) method based on MEKC and sweeping-MEKC modes is described. A nonfluorescent compound, malachite green (MG), and a doubled Nd:YAG laser (532 nm, 300 mW) were selected as model compound and light source, respectively. In order to carry out a quantitative analysis of MG, a monochromator (effective bandwidth, 0.4 nm) was used to collect the specific Raman line at 1616 cm-1 (N-(φ and C-C stretch, corresponding to 582 nm when the wavelength of the exciting source was 532 nm). As a result, the LOD for MG was 10 ppm, based on the MEKC/RRS mode. This could be improved to 5 ppb when the sweeping-MEKC/RRS mode was applied. Furthermore, with the addition of nano-size silver colloids to the CE buffer the detection limits can be further improved, but the data obtained with surface-enhanced\resonance Raman spectroscopy (SERRS) are less useful for quantitative purposes.

原文英語
頁(從 - 到)4688-4693
頁數6
期刊Electrophoresis
27
發行號23
DOIs
出版狀態已發佈 - 2006 十二月 1

指紋

Micellar Electrokinetic Capillary Chromatography
Raman Spectrum Analysis
Raman spectroscopy
Monochromators
Light sources
Solid-State Lasers
Buffers
Bandwidth
Limit of Detection
Wavelength
Lasers
Chemical analysis
Light
malachite green

ASJC Scopus subject areas

  • Analytical Chemistry
  • Biochemistry
  • Clinical Biochemistry

引用此文

A new approach for the detection of a nonfluorescent compound by CE-resonance Raman spectroscopy based on the sweeping-MEKC mode. / Tsai Chih-Hsin, C. H.; Cha, Po Han; Lin, Cheng Huang; Chang, Ta Chau; Chia, Chih Ta.

於: Electrophoresis, 卷 27, 編號 23, 01.12.2006, p. 4688-4693.

研究成果: 雜誌貢獻文章

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abstract = "A CE-resonance Raman spectroscopy (CE-RRS) method based on MEKC and sweeping-MEKC modes is described. A nonfluorescent compound, malachite green (MG), and a doubled Nd:YAG laser (532 nm, 300 mW) were selected as model compound and light source, respectively. In order to carry out a quantitative analysis of MG, a monochromator (effective bandwidth, 0.4 nm) was used to collect the specific Raman line at 1616 cm-1 (N-(φ and C-C stretch, corresponding to 582 nm when the wavelength of the exciting source was 532 nm). As a result, the LOD for MG was 10 ppm, based on the MEKC/RRS mode. This could be improved to 5 ppb when the sweeping-MEKC/RRS mode was applied. Furthermore, with the addition of nano-size silver colloids to the CE buffer the detection limits can be further improved, but the data obtained with surface-enhanced\resonance Raman spectroscopy (SERRS) are less useful for quantitative purposes.",
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AU - Cha, Po Han

AU - Lin, Cheng Huang

AU - Chang, Ta Chau

AU - Chia, Chih Ta

PY - 2006/12/1

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N2 - A CE-resonance Raman spectroscopy (CE-RRS) method based on MEKC and sweeping-MEKC modes is described. A nonfluorescent compound, malachite green (MG), and a doubled Nd:YAG laser (532 nm, 300 mW) were selected as model compound and light source, respectively. In order to carry out a quantitative analysis of MG, a monochromator (effective bandwidth, 0.4 nm) was used to collect the specific Raman line at 1616 cm-1 (N-(φ and C-C stretch, corresponding to 582 nm when the wavelength of the exciting source was 532 nm). As a result, the LOD for MG was 10 ppm, based on the MEKC/RRS mode. This could be improved to 5 ppb when the sweeping-MEKC/RRS mode was applied. Furthermore, with the addition of nano-size silver colloids to the CE buffer the detection limits can be further improved, but the data obtained with surface-enhanced\resonance Raman spectroscopy (SERRS) are less useful for quantitative purposes.

AB - A CE-resonance Raman spectroscopy (CE-RRS) method based on MEKC and sweeping-MEKC modes is described. A nonfluorescent compound, malachite green (MG), and a doubled Nd:YAG laser (532 nm, 300 mW) were selected as model compound and light source, respectively. In order to carry out a quantitative analysis of MG, a monochromator (effective bandwidth, 0.4 nm) was used to collect the specific Raman line at 1616 cm-1 (N-(φ and C-C stretch, corresponding to 582 nm when the wavelength of the exciting source was 532 nm). As a result, the LOD for MG was 10 ppm, based on the MEKC/RRS mode. This could be improved to 5 ppb when the sweeping-MEKC/RRS mode was applied. Furthermore, with the addition of nano-size silver colloids to the CE buffer the detection limits can be further improved, but the data obtained with surface-enhanced\resonance Raman spectroscopy (SERRS) are less useful for quantitative purposes.

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