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FullSpectrumIsotopic(13)CNMRUsingPolarizationTransferforPosition-SpecificIsotopeAnalysis

机译:全季度异络(13)CNMRUSING极化转化器覆盖物分析

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摘要

For the last ten years, quantitative isotope ratio monitoring C-13 NMR (irm-C-13 NMR) has been successfully tested and proven as an efficient tool for the determination of position-specific C-13/C-12 ratios. Several applications in different domains have shown the interest in this technique. In the context of origin assignment, the possibility to track the distribution network of illicit drugs or cutting agents is of prime importance. However irm-C-13 NMR still suffers from a relative lack of sensitivity limiting its dissemination among control laboratories. Improvements were proposed to reduce experiment time by using the INEPT sequence ("Insensitive Nuclei Enhanced by Polarization Transfer") based on polarization transfer from highly sensitive H-1 to less sensitive( 13)C. Several applications based on the use of the one bond scalar coupling between H-1 and C-13 ((1)J(CH)) have shown the potential of this methodology in terms of short experimental duration. However, the isotopic information given by quaternary carbons was lost. The aim of this study is to extend this approach by using short- and long-range coupling ((1)J(CH), (2)J(CH), and (3)J(CH)) in order to have access to all C-13/C-12 position-specific ratios, i.e., acquisition of the full spectrum (FS-INEPT). It is shown that this innovative tool provides both sensitivity gain-thanks to the long-range polarization transfer-and appropriate repeatability. The relative isotopic profiles allowed the classification of two cutting agents, caffeine and paracetamol (acetaminophen), according to their origin, as it was previously observed with "classical" irm-C-13 NMR but consuming much less sample and/or reducing the experimental time.
机译:在过去的十年中,已经成功地测试了定量同位素比率C-13 NMR(IRM-C-13 NMR)作为测定特异性特异性C-13 / C-12比率的有效工具。不同域中的若干应用已经表明了对该技术的兴趣。在原产地分配的背景下,跟踪非法药物或切割代理的分销网络的可能性是最重要的。然而,IRM-C-13 NMR仍然存在相对缺乏灵敏度,限制了对照实验室的传播。提出了基于从高敏感的H-1至更低敏感(13)C的偏振转移来降低实验时间来降低实验时间。基于使用H-1和C-13之间的一个键标量耦合的几种应用((1)J(CH))在短的实验持续时间方面表明了该方法的潜力。然而,第四纪碳的同位素信息丢失了。本研究的目的是通过使用短路和远程耦合来扩展这种方法((1)j),(2)j(ch)和(3)j(ch))以便访问对于所有C-13 / C-12位位置比率,即收购全谱(FS-Inept)。结果表明,由于远程极化传输和适当的重复性,这一创新工具提供了敏感性增益 - 以及适当的重复性。相对同位素型材允许根据其来源进行两种切割剂,咖啡因和乙酰氨基酚(乙酰氨基酚)的分类,因为之前用“典型”IRM-C-13 NMR观察到但是消耗更少的样品和/或减少实验性时间。

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  • 来源
    《Analytical chemistry》 |2018年第14期|共8页
  • 作者单位

    Univ Nantes Elucidat Biosynth Isotop Spectrometry Grp CEISAM CNRS UMR6230 F-44322 Nantes France;

    Univ Nantes Elucidat Biosynth Isotop Spectrometry Grp CEISAM CNRS UMR6230 F-44322 Nantes France;

    Univ Nantes Elucidat Biosynth Isotop Spectrometry Grp CEISAM CNRS UMR6230 F-44322 Nantes France;

    Univ Nantes Elucidat Biosynth Isotop Spectrometry Grp CEISAM CNRS UMR6230 F-44322 Nantes France;

    Inst Natl Police Sci Lab Lyon 31 Ave Franklin Roosevelt F-69134 Ecully France;

    Inst Natl Police Sci Lab Lyon 31 Ave Franklin Roosevelt F-69134 Ecully France;

    Univ Nantes Elucidat Biosynth Isotop Spectrometry Grp CEISAM CNRS UMR6230 F-44322 Nantes France;

    Univ Nantes Elucidat Biosynth Isotop Spectrometry Grp CEISAM CNRS UMR6230 F-44322 Nantes France;

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  • 正文语种 eng
  • 中图分类 分析化学;
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