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首页> 外文期刊>Analytical chemistry >Alkyl Chain Conformation of Octadecylsilane Stationary Phases by Raman Spectroscopy. 1. Temperature Dependence
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Alkyl Chain Conformation of Octadecylsilane Stationary Phases by Raman Spectroscopy. 1. Temperature Dependence

机译:拉曼光谱法测定十八烷基硅烷固定相的烷基链构象。 1.温度依赖性

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Raman spectroscopy is used for the first time to probe the effect of temperature on the conformational order of polymeric and monomeric octadecylsilane stationary phases. Spectral data in the v(C-C) and v(C-H) regions are interpreted in terms of alkyl chain conformational state and its dependence on temperature. In contrast to the liquidlike disordered state characteristic of these stationary phases at room temperature, at liquid N↓(2) tempera-tures, the alkyl chains exist in a more ordered state with a residual level of gauche conformational defects. Systematic studies between -15 and 95℃ reveal more subtle changes in conformational order as ascertained from empirical spectral indicators including the intensity ratios I.[v↓(a)(CH↓(2)]/I[v↓(s)(CH↓(2)] and I[v(C-C)T]/I[v(C-C)G].Plots of these ratios as a function of temperature reveal two distinct regimes of behavior. By extrapolating the linear regions of these plots, a surface "phase transition" temperature of~20℃ for both surface-confined octade-cylsilane stationary phases is estimated that represents subtle changes in alkyl chain conformational order from a more ordered phase to a slightly more disordered phase. The similarity in behavior between the polymeric and monomeric octadecylsilane stationary phases is interpreted as evidence for similar interchain spacing of the alkylsilanes on these silica surfaces.
机译:拉曼光谱法首次用于探测温度对聚合物和单体十八烷基硅烷固定相构象顺序的影响。 v(C-C)和v(C-H)区域中的光谱数据是根据烷基链构象态及其对温度的依赖性来解释的。与这些固定相在室温下的液态无序状态特征相反,在液态N↓(2)温度下,烷基链以更有序的状态存在,残留水平的构象构象缺陷。从-15至95℃的系统研究表明,从包括强度比I. [v↓(a)(CH↓(2)] / I [v↓(s)(CH) ↓(2)]和I [v(CC)T] / I [v(CC)G]。这些比值随温度变化的曲线揭示了两种不同的行为模式,通过对这些曲线的线性区域进行外推,可以得出估计两个表面受限的十八烷基硅烷固定相的表面“相变”温度均为〜20℃,代表烷基链构象顺序从较有序的相向较无序的相的细微变化。十八烷基硅烷的固定相和单体十八烷基硅烷的固定相被解释为在这些二氧化硅表面上烷基硅烷具有相似的链间间距的证据。

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