Noh Jermim, Suh Yung Doug, Park Yong Ki, Jin Seung Min, Kim Soo Ho, Woo Seong Ihl
Department of Chemical and Biomolecular Engineering (BK21 Graduate Program), Korea Advanced Institute of Science and Technology, 373-1 Guseong-dong, Yuseong-gu, Daejeon 305-701, Korea.
Rev Sci Instrum. 2007 Jul;78(7):072205. doi: 10.1063/1.2755745.
Combined micro-Raman/UV-visible (vis)/fluorescence spectroscopy system, which can evaluate an integrated array of more than 10,000 microsamples with a minimuma size of 5 microm within a few hours, has been developed for the first time. The array of microsamples is positioned on a computer-controlled XY translation microstage with a spatial resolution of 1 mum so that the spectra can be mapped with micron precision. Micro-Raman spectrometers have a high spectral resolution of about 2 cm(-1) over the wave number range of 150-3900 cm(-1), while UV-vis and fluorescence spectrometers have high spectral resolutions of 0.4 and 0.1 nm over the wavelength range of 190-900 nm, respectively. In particular, the signal-to-noise ratio of the micro-Raman spectroscopy has been improved by using a holographic Raman grating and a liquid-nitrogen-cooled charge-coupled device detector. The performance of the combined spectroscopy system has been demonstrated by the high-throughput screening of a combinatorial ferroelectric (i.e., BaTi(x)Zr(1-x)O(3)) library. This system makes possible the structure analysis of various materials including ferroelectrics, catalysts, phosphors, polymers, alloys, and so on for the development of novel materials and the ultrasensitive detection of trace amounts of pharmaceuticals and diagnostic agents.
首次开发出了结合微拉曼/紫外可见(vis)/荧光光谱的系统,该系统能在几小时内评估超过10000个最小尺寸为5微米的微样品集成阵列。微样品阵列位于具有1微米空间分辨率的计算机控制的XY平移微台上,这样光谱就能以微米精度进行测绘。微拉曼光谱仪在150 - 3900厘米⁻¹的波数范围内具有约2厘米⁻¹的高光谱分辨率,而紫外可见光谱仪和荧光光谱仪在190 - 900纳米的波长范围内分别具有0.4纳米和0.1纳米的高光谱分辨率。特别地,通过使用全息拉曼光栅和液氮冷却的电荷耦合器件探测器提高了微拉曼光谱的信噪比。通过对组合铁电体(即BaTi(x)Zr(1 - x)O(3))库的高通量筛选证明了该组合光谱系统的性能。该系统使包括铁电体、催化剂、磷光体、聚合物、合金等各种材料的结构分析成为可能,以用于新型材料的开发以及痕量药物和诊断剂的超灵敏检测。