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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Raman spectroscopy of potassium acetate-intercalated kaolinites at liquid nitrogen temperature
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Raman spectroscopy of potassium acetate-intercalated kaolinites at liquid nitrogen temperature

机译:液氮温度下醋酸钾插层高岭石的拉曼光谱

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Raman microscopy has been used to study low and high defect kaolinites and their potassium acetate intercalated complexes at 298 and 77 K. Raman spectroscopy shows significant differences in the spectra of the hydroxyl-stretching region of the two types of kaolinites, which is also reflected in the spectroscopy of the hydroxyl-stretching region of the intercalation complexes. Additional bands to the normally observed kaolinite hydroxyl stretching frequencies are observed for the low and high defect kaolinites at 3605 and 3602 cm(-1) at 298 K. Upon cooling to liquid nitrogen temperature, these bands are observed at 3607 and 3604 cm(-1), thus indicating a weakening of the hydrogen bond formed between the inner surface hydroxyls and the acetate ion. Upon cooling to liquid nitrogen temperature, the frequency of the inner hydroxyls shifted to lower frequencies. Collection of Raman spectra at liquid nitrogen temperature did not give better band separation compared to the room temperature spectra as the bands increased in width and shifted closer together. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 14]
机译:拉曼显微镜已用于研究低缺陷和高缺陷高岭石及其在298和77 K时的乙酸钾插层配合物。拉曼光谱显示两种高岭石的羟基拉伸区光谱有显着差异,这也反映在嵌入配合物的羟基伸展区域的光谱学。对于低缺陷高缺陷高岭石和高缺陷高岭石,在298 K下观察到通常观察到的高岭石羟基拉伸频率的附加谱带。冷却至液氮温度后,在3607和3604 cm(-)观察到这些谱带1),表明内表面羟基和乙酸根离子之间形成的氢键减弱。冷却至液氮温度后,内部羟基的频率移至较低频率。与室温光谱相比,在液氮温度下收集的拉曼光谱没有给出更好的能带分离,因为能带的宽度增加并且移向更近。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:14]

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