首页> 外文期刊>Journal of Molecular Structure >Two-dimensional (2D) infrared (IR) correlation spectroscopy for dynamic absorption behavior of oleic acid (OA) onto silica gel
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Two-dimensional (2D) infrared (IR) correlation spectroscopy for dynamic absorption behavior of oleic acid (OA) onto silica gel

机译:二维(2D)红外(IR)相关光谱法,用于油酸(OA)在硅胶上的动态吸收行为

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摘要

Dynamic absorption behavior of oleic acid (OA) onto silica gel was probed by infrared (IR) spectroscopy. Once OA is injected into silica gel placed on a horizontal attenuated total reflectance prism, the silica gel starts to absorb the OA molecules due to the molecular-level interaction based on hydrogen bonding between the COOH of OA and the OH of silica gel. The substantial level of variation of spectral feature is readily observed during the absorption of OA onto silica gel. 2D correlation analysis of the time-dependent IR spectra reveals fine details of absorption dynamics of OA molecules depending on the molecular structure. The predominant absorption of the monomers occurs at the onset of the absorption, and it is then quickly followed by the decrease in the dimers. In other words, the dissociation of the liquid crystals occurs via the disuniting of the tightly packed OA dimers.
机译:通过红外(IR)光谱探测油酸(OA)在硅胶上的动态吸收行为。一旦将OA注入放置在水平衰减全反射棱镜上的硅胶中,由于基于OA的COOH和硅胶OH之间的氢键的分子水平相互作用,硅胶开始吸收OA分子。在将OA吸收到硅胶上的过程中,很容易观察到光谱特征的明显变化。随时间变化的红外光谱的二维相关分析揭示了OA分子吸收动力学的精细细节,具体取决于分子结构。单体的主要吸收发生在吸收开始时,然后迅速跟随其二聚体的减少。换句话说,液晶的解离通过紧密堆积的OA二聚体的解离而发生。

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