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首页> 外文期刊>Analytica chimica acta >Evaluation of microstructural features of a new polymeric organic stationary phase grafted on silica surface:A paradigm of characterization of HPLC-stationary phases by a combination of suspension-state ~1H NMR and solid-state ~13C-CP/MAS-NMR
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Evaluation of microstructural features of a new polymeric organic stationary phase grafted on silica surface:A paradigm of characterization of HPLC-stationary phases by a combination of suspension-state ~1H NMR and solid-state ~13C-CP/MAS-NMR

机译:硅胶表面接枝的新型聚合有机固定相的微观结构特征评估:结合悬浮态〜1H NMR和固态〜13C-CP / MAS-NMR表征HPLC固定相的范例

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Silica-supported poly(octadecylacrylate) (Sil-ODA_n),polymeric octadecylsilyl silica (polymeric ODS),and monomeric octadecylsilyl silica (monomeric ODS) were studied by a combination of suspension-state ~1H NMR and solid-state ~13C CP/MAS-NMR to probe the mechanisms underlying their functions as stationary phases for RP-HPLC.Sil-ODA_n,with a strong temperature dependent separation behaviour showed correspondent temperature dependent manifestations in both suspension-state ' H NMR and solid-state ~13C CP/MAS-NMR experiments.With a gradual increase in temperature,intensity of proton signals (~1H NMR) of octadecyl moieties (mainly methylene groups) rose dramatically.This dramatic rise was at the same temperature of an endothermic peak detectable in its DSC thermogram indicating a relatively complete solid to liquid phase transition.In addition temperature dependencies of the ratio of trans to gauche conformed well to temperature dependencies of the separation factor between naphthacene and triphenylene (as a simple indicator of shape selectivity).Therefore NMR spectra of Sil-ODA_n were used as a reference for ascertaining percentage of octadecyl moieties of liquid type mobility in the two other stationary phases.Using this method we determined percentage of liquid phase in polymeric ODS and monomeric ODS at various temperatures.We suggest a combination of suspension-state 'H NMR and solid-state ~13C CP/MAS-NMR for structure-dynamic characterization of various kinds of hydrocarbon chains grafted onto the silica particles.
机译:通过悬浮态〜1H NMR和固态〜13C CP / MAS的组合研究了二氧化硅负载的聚十八烷基丙烯酸酯(Sil-ODA_n),聚合十八烷基甲硅烷基二氧化硅(聚合ODS)和单体十八烷基甲硅烷基二氧化硅(单体ODS)。 -NMR探测其作为RP-HPLC固定相的基本机理。Sil-ODA_n具有很强的温度依赖性分离行为,在悬浮态1 H NMR和固态〜13C CP / MAS中均表现出相应的温度依赖性表现-NMR实验。随着温度的逐渐升高,十八烷基部分(主要是亚甲基)的质子信号强度(〜1H NMR)急剧上升。此急剧上升与在其DSC热谱图中可检测到的吸热峰的温度相同。相对完整的固相到液相的转变。另外,反式与树胶之比的温度依赖性与萘并苯之间的分离因子的温度依赖性非常吻合。 d三亚苯基(作为形状选择性的简单指标)。因此,将Sil-ODA_n的NMR光谱用作确定其他两个固定相中液体型迁移率的十八烷基部分的百分比的参考。使用此方法,我们确定了液相的百分比我们建议将悬浮态1 H NMR和固态〜13C CP / MAS-NMR结合使用,以对接枝到二氧化硅颗粒上的各种烃链进行结构动力学表征。

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