Yamauchi Masayo, Mawatari Kazuma, Hibara Akihide, Tokeshi Manabu, Kitamori Takehiko
Department of Applied Chemistry, School of Engineering, University of Tokyo, 7-3-1 Hongo, Bunkyo, Tokyo 113-8656, Japan.
Anal Chem. 2006 Apr 15;78(8):2646-50. doi: 10.1021/ac0519920.
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.
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。