Circular dichroism thermal lens microscope in the UV wavelength region (UV-CD-TLM) for chiral analysis on a microchip

We have developed a circular-dichroism thermal lens microscope for UV wavelengths (UV-CD-TLM), for the first time, to realize sensitive chiral analysis on a microchip. Quasi-continuous-wave phase modulation of a pulsed UV laser was used to generate left-circularly polarized light and right-circularl...

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Veröffentlicht in:Analytical and bioanalytical chemistry 2008-08, Vol.391 (7), p.2521-2526
Hauptverfasser: Mawatari, Kazuma, Kubota, Shun, Kitamori, Takehiko
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Sprache:eng
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Zusammenfassung:We have developed a circular-dichroism thermal lens microscope for UV wavelengths (UV-CD-TLM), for the first time, to realize sensitive chiral analysis on a microchip. Quasi-continuous-wave phase modulation of a pulsed UV laser was used to generate left-circularly polarized light and right-circularly polarized light and to detect the generated TL signal amplitude and phase with a lock-in amplifier. The amplitude and phase were used to determine the concentration and chirality, respectively, of a sample. The basic principle of UV-CD-TLM for chiral analysis on a microchip was verified by measuring aqueous solutions of optically active camphorsulfonic acids (CSA). Lower limits of detection (LOD) were calculated at S / N  = 2 and were 8.7 × 10 −4  mol L −1 (Δ A  = 5.2 × 10 −6 Abs.) for (+)-CSA and 8.4 × 10 −4  mol L −1 (Δ A  = 5.0 × 10 −6  Abs.) for (−)-CSA. In terms of number of molecules, LODs for UV-CD-TLM were calculated to be 8.7 fmol and 8.4 fmol, respectively. This is at least three orders of magnitude lower than previously obtained. The applicability of UV-CD-TLM for chiral analysis on a microchip was verified. Figure Sensitive chiral analysis by thermal lens microscope (TLM)
ISSN:1618-2642
1618-2650
DOI:10.1007/s00216-008-2006-z