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用于微芯片上灵敏手性分析的圆二色性热透镜显微镜。

Circular dichroism thermal lens microscope for sensitive chiral analysis on microchip.

作者信息

Yamauchi Masayo, Mawatari Kazuma, Hibara Akihide, Tokeshi Manabu, Kitamori Takehiko

机构信息

Department of Applied Chemistry, School of Engineering, University of Tokyo, 7-3-1 Hongo, Bunkyo, Tokyo 113-8656, Japan.

出版信息

Anal Chem. 2006 Apr 15;78(8):2646-50. doi: 10.1021/ac0519920.

Abstract

A novel chiral detector, a circular-dichroism thermal lens microscope (CD-TLM), was developed to realize sensitive and selective detection of small volume chiral samples on a microchip. To realize chiral recognition on TLM, an excitation beam was phase-modulated at a frequency of 1.2 kHz, and left-circularly polarized light (LCPL) and right-circularly polarized light (RCPL) were generated. Then, the differential light absorption between LCPL and RCPL, which is the CD effect, was detected as thermal lens signal intensity and phase. As a standard sample, optically active tris(ethylenediamine)cobalt(III) [Co-(en)3]3+I3- aqueous solutions were used for performance evaluations. First, we verified the basic principle for selective chiral analysis by comparing the signals in intensity-modulation and phase-modulation modes of the excitation beam. Also, we found that the g-factor, which is significant for determining enantiomeric excess, agreed well with the value obtained by the CD spectrometer. The limit of detection (LOD) for enantiopure [Co-(en)3]3+I3- was 6.3 x 10(-5) M (1.9 x 10(-7) abs) for (-)-Co(en)3(3+), and the sensitivity in absorbance units was more than 250 times higher than that in a CD spectrophotometer. Finally, we demonstrated enantiomeric excess determination on a microchip. The LOD was 1.7% (8.5 x 10(-7) abs) for (-)-Co(en)3(3+) and at least one order superior to the LOD of a CD spectrometer. The applicability of CD-TLM for sensitive chiral analysis on a microchip was verified, and CD-TLM is expected to be promising for microchip-based chiral synthesis and analysis systems.

摘要

一种新型手性探测器——圆二色性热透镜显微镜(CD-TLM)被开发出来,用于在微芯片上实现对小体积手性样品的灵敏且选择性检测。为了在热透镜显微镜上实现手性识别,激发光束以1.2 kHz的频率进行相位调制,从而产生左旋圆偏振光(LCPL)和右旋圆偏振光(RCPL)。然后,检测LCPL和RCPL之间的差分光吸收,即圆二色性效应,作为热透镜信号强度和相位。作为标准样品,使用旋光性三(乙二胺)钴(III)[Co-(en)3]3+I3-水溶液进行性能评估。首先,我们通过比较激发光束强度调制和相位调制模式下的信号,验证了选择性手性分析的基本原理。此外,我们发现对于确定对映体过量具有重要意义的g因子,与圆二色光谱仪获得的值吻合良好。对映体纯的[Co-(en)3]3+I3-中,(-)-Co(en)3(3+)的检测限(LOD)为6.3×10(-5) M(1.9×10(-7)吸光度),吸光度单位下的灵敏度比圆二色分光光度计高出250倍以上。最后,我们展示了在微芯片上对映体过量的测定。(-)-Co(en)3(3+)的LOD为1.7%(8.5×10(-7)吸光度),至少比圆二色光谱仪的LOD高一个数量级。验证了CD-TLM在微芯片上进行灵敏手性分析的适用性,并且CD-TLM有望应用于基于微芯片的手性合成和分析系统。

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