조합화학적 기법에 의한 신촉매, 재료 및 바이오분자구조분석용 공초점 라만/자외선-가시광/형광 분광기
    1.
    发明授权
    조합화학적 기법에 의한 신촉매, 재료 및 바이오분자구조분석용 공초점 라만/자외선-가시광/형광 분광기 失效
    新型催化剂,材料和生物分子的组合拉曼/ UV-VIS /荧光光谱分析

    公开(公告)号:KR100809629B1

    公开(公告)日:2008-03-05

    申请号:KR1020060083697

    申请日:2006-08-31

    Abstract: A confocal Raman/UV-Vis/fluorescence spectroscopy for combinatorial structural analysis of novel catalysts, materials, and biomolecules is provided to effectively perform structure analysis and quantitative analysis of samples. A confocal Raman/UV-Vis/fluorescence spectroscopy for combinatorial structural analysis of novel catalysts, materials, and biomolecules includes an argon laser(101), a diode laser(134), an XYZ stage(132), a sample chamber(133), three monochrome light devices(123), an optical amplification tube(131), and a CCD detector(106). The argon laser has a wavelength of 488 to 514nm. The diode laser has a wavelength of 785nm. The XYZ stage is automatically controlled by a computer. The sample chamber includes an objective lens having various magnifications. The optical amplification tube and the CCD detector detect the signals.

    Abstract translation: 提供了一种用于组合结构分析新型催化剂,材料和生物分子的共焦拉曼/ UV-Vis /荧光光谱,有效地进行了样品的结构分析和定量分析。 用于新型催化剂,材料和生物分子的组合结构分析的共焦拉曼/ UV-Vis /荧光光谱包括氩激光(101),二极管激光器(134),XYZ级(132),样品室(133) ,三个单色光装置(123),光放大管(131)和CCD检测器(106)。 氩激光器的波长为488〜514nm。 二极管激光器的波长为785nm。 XYZ平台由计算机自动控制。 样品室包括具有各种放大率的物镜。 光放大管和CCD检测器检测信号。

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