首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Raman Spectroscopic Analysis of Cyanogenic Glucosides in Plants: Development of a Flow Injection Surface-Enhanced Raman Scatter (FI-SERS) Method for Determination of Cyanide
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Raman Spectroscopic Analysis of Cyanogenic Glucosides in Plants: Development of a Flow Injection Surface-Enhanced Raman Scatter (FI-SERS) Method for Determination of Cyanide

机译:植物中氰化物苷的拉曼光谱分析:流动注射表面增强拉曼散射(FI-SERS)方法测定氰化物的开发

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摘要

Cyanogenic glucosides were studied using Raman spectroscopy. Spectra of the crystal forms of linamarin, linustatin, neolinustatin, amygdalin, sambunigrin, and dhurrin were obtained using a Raman spectrograph microscope equipped with a 532 nm laser. The position of the signal from the C≡N triple bond of the cyanohydrin group was influenced by the nature of the side group and was above 2240 cm~(-1) for the three cyanogenic glucosides that contain a neighboring aromatic ring, and below or partially below 2240 cm~(-1) for the non-aromatic cyanoglucosides. Signals from the CN bond of linamarin/lotaustralin in leaves and roots from a medium cyanogenic cassava variety were obtained in situ using a Fourier transform near-infrared (FT-NIR) Raman interferometer with a 1064 nm laser, but the signal was very weak and difficult to obtain. A spectrum containing a signal from the CN bond of dhurrin in a freeze-dried sorghum leaf was also obtained using this instrument. Surface-enhanced Raman Spectroscopy (SERS) was demonstrated to be a more sensitive method that enabled determination of the cyanogenic potential of plant tissue. The SERS method was optimized by flow injection (FI) using a colloidal gold dispersion as effluent. Potential problems and pitfalls of the method are discussed.
机译:使用拉曼光谱研究了氰基葡萄糖苷。使用装有532nm激光的拉曼光谱显微镜获得亚麻苦参碱,linustatin,新linustatin,苦杏仁苷,三香皂苷和杜林的晶体形式的光谱。来自氰醇基团的C≡N三键的信号的位置受侧基的影响,对于含有一个相邻芳香环的三个氰基葡萄糖苷,其位置在2240 cm〜(-1)以上,或低于或低于非芳族氰基葡萄糖苷部分低于2240 cm〜(-1)。使用带有1064 nm激光的傅立叶变换近红外(FT-NIR)拉曼干涉仪原位获得来自中等生氰木薯品种的叶片和根中亚麻苦参碱/ LOTSTRASTRIN的CN键的信号,但该信号非常微弱,很难获得。还使用该仪器获得了包含来自冻干高粱叶中杜林脂的CN键的信号的光谱。表面增强拉曼光谱(SERS)被证明是一种更灵敏的方法,能够确定植物组织的生氰潜力。通过使用胶体金分散液作为流出液的流动注射(FI)优化了SERS方法。讨论了该方法的潜在问题和陷阱。

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