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首页> 外文期刊>Journal of Chromatographic Science >GC-MS and GC-IR Analyses of the Methoxy-1-n-pentyl-3-(1-naphthoyl)-indoles: Regioisomeric Designer Cannabinoids
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GC-MS and GC-IR Analyses of the Methoxy-1-n-pentyl-3-(1-naphthoyl)-indoles: Regioisomeric Designer Cannabinoids

机译:甲氧基-1-N-戊基-3-(1-Naphthoyl)-WOLDOLS的GC-MS和GC-IR分析:Regioisomeric Designer Cannabinoids

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摘要

The indole ring regioisomeric methoxy-1-n-pentyl-3-(1-naphthoyl)-indoles represent indole ring-substituted analogs of the synthetic cannabinoid JWH-018. The electron ionization mass spectra show equivalent regioisomeric major fragments resulting from cleavage of the groups attached to the central indole nucleus. The characteristic (M-17)(+) fragment ion at m/z 354 resulting from the loss of OH group is significant in the mass spectra of all four compounds. Fragmentation of the naphthoyl and/or pentyl groups yields the cations at m/z 314, 300, 244 and 216. The vapor-phase infrared spectra provide a number of characteristic absorption bands to identify the individual isomers. Gas chromatographic separations on a capillary column containing a film of trifluoropropylmethyl polysiloxane (Rtx-200) provided excellent resolution of these compounds, their precursor indoles and intermediate pentylindoles. The elution order appears related to the degree of crowding of indole ring substituents.
机译:吲哚环状甲氧基-1-N-戊基-3-(1-萘甲酰基) - 吲哚表示合成大麻素JWH-018的吲哚环取代类似物。 电子电离质谱显示由附着在中央吲哚核的基团的裂解产生的等效调节件主要片段。 由OH基团的损失引起的M / Z 354的特征(M-17)(+)片段离子在所有四种化合物的质谱中显着。 萘甲酰基和/或戊基的碎片产生在M / Z 314,300,244和216处的阳离子。气相红外光谱提供许多特征吸收带以鉴定单独的异构体。 含有三氟丙基甲基聚硅氧烷膜(RTX-200)的毛细管柱上的气相色谱分离提供了这些化合物,其前体吲哚和中间戊吲哚的优异分辨率。 洗脱顺序出现在吲哚环取代基的拥挤程度有关。

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  • 来源
    《Journal of Chromatographic Science》 |2018年第9期|共10页
  • 作者单位

    Auburn Univ Harrison Sch Pharm Dept Drug Discovery &

    Dev Auburn AL 36849 USA;

    Alexandria Univ Dept Pharmaceut Analyt Chem Fac Pharm Alexandria 21521 Egypt;

    Auburn Univ Harrison Sch Pharm Dept Drug Discovery &

    Dev Auburn AL 36849 USA;

    Auburn Univ Harrison Sch Pharm Dept Drug Discovery &

    Dev Auburn AL 36849 USA;

    Auburn Univ Harrison Sch Pharm Dept Drug Discovery &

    Dev Auburn AL 36849 USA;

    Auburn Univ Harrison Sch Pharm Dept Drug Discovery &

    Dev Auburn AL 36849 USA;

    Auburn Univ Harrison Sch Pharm Dept Drug Discovery &

    Dev Auburn AL 36849 USA;

    Auburn Univ Harrison Sch Pharm Dept Drug Discovery &

    Dev Auburn AL 36849 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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