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首页> 外文期刊>Analytical chemistry >~(31)P-Edited Diffusion-Ordered ~1H NMR Spectroscopy for the Spectral Isolation and Identification of Organophosphorus Compounds Related to Chemical Weapons Agents and Their Degradation Products
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~(31)P-Edited Diffusion-Ordered ~1H NMR Spectroscopy for the Spectral Isolation and Identification of Organophosphorus Compounds Related to Chemical Weapons Agents and Their Degradation Products

机译:〜(31)P编辑的扩散有序〜1H NMR光谱用于光谱分离和鉴定与化学武器剂及其降解产物有关的有机磷化合物

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摘要

Organophosphorus compounds represent a large class of molecules that include pesticides, flame-retardants, biologically relevant molecules, and chemical weapons agents (CWAs). The detection and identification of organophosphorus molecules, particularly in the cases of pesticides and CWAs, are paramount to the verification of international treaties by various organizations. To that end, novel analytical methodologies that can provide additional support to traditional analyses are important for unambiguous identification of these compounds. We have developed an NMR method that selectively edits for organophosphorus compounds via ~(31)P-~1H heteronuclear single quantum correlation (HSQC) and provides an additional chromatographic-like separation based on self-diffusivities of the individual species via ~1H diffusion-ordered spectroscopy (DOSY): ~1H-~(31)P HSQC-DOSY. The technique is first validated using the CWA VX (O-ethyl S-[2-(diisopropylamino)ethyl] methylphosphonothioate) by traditional two-dimensional DOSY spectra. We then extend this technique to a complex mixture of VX degradation products and identify all the main phosphorus-containing byproducts generated after exposure to a zinc-cyclen organometallic homogeneous catalyst.
机译:有机磷化合物代表一类大分子,包括农药,阻燃剂,生物学相关分子和化学武器试剂(CWA)。对有机磷分子的检测和鉴定,特别是在农药和CWA的情况下,对于各种组织对国际条约的核查至关重要。为此,可以为传统分析提供额外支持的新颖分析方法对于明确鉴定这些化合物非常重要。我们已经开发出一种NMR方法,该方法可通过〜(31)P-〜1H异核单量子相关(HSQC)选择性地编辑有机磷化合物,并通过〜1H扩散-基于各个物种的自扩散性,提供一种类似于色谱的分离方法有序光谱法(DOSY):〜1H-〜(31)P HSQC-DOSY。该技术首先使用CWA VX(O-乙基S- [2-(二异丙基氨基)乙基]甲基硫代磷酸酯)通过传统的二维DOSY光谱进行验证。然后,我们将该技术扩展为VX降解产物的复杂混合物,并确定暴露于锌-周期有机金属均相催化剂后产生的所有主要含磷副产物。

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