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首页> 外文期刊>Applied clay science >Structural characterization of organo-montmorillonites prepared from a series of primary alkylamines salts: Mid-IR and near-IR study
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Structural characterization of organo-montmorillonites prepared from a series of primary alkylamines salts: Mid-IR and near-IR study

机译:由一系列初级烷基胺制备的有机蒙脱石的结构表征:中外IR和近红外研究

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Primary alkylammonium cations with progressively increasing chain length from methylammonium (CH3-NH3+) to nonadecylammonium (CH3-(CH2)(18)-NH3+) were used to prepare unique series of organo-montmorillonites (O-Mts). Infrared spectroscopy in the mid-IR and near-IR regions and XRD were used to characterize samples and to investigate the effect of the chain length on the arrangement of cations confined in montmorillonite (Mt) interlayers. For the first time detailed assignment of the vibration bands in the near-IR region (8000-4000 cm(-1)) was provided not only for O-Mts but also for selected primary alkylamines and alkylammonium salts, used for their preparation. The IR spectra showed that both, type of head-group, i.e. NH2 vs NH3+, and nature of the anionic counterpart, i.e. chloride vs Mt layer, significantly affected the positions the N-H vibration modes as a result of different H-bonds in O-Mts. The alkyl chain length had significant effect on the arrangement of the intercalated cations. With increasing chain length the stretching (vCH(2)) and first overtone (2vCH(2)) bands were shifted to lower wavenumbers indicating decreasing amount of disordered gauche in favor of ordered all-trans conformers. Significantly higher shift of the 2v(as)CH(2) band than v(as)XH(2) benefits the NIR region for conformational studies more than MIR.
机译:使用从甲基铵(CH3-NH3 +)逐渐增加的链长的主要烷基阳离子(CH3-NH3 +) - 非亚烷基(CH3-(CH3-(CH3-(CH 2)(18)-NH3 +)制备独特的有机蒙米尔酮(O-MTS)。中外IR和近红外区域和XRD中的红外光谱用于表征样品并探讨链长对蒙脱石(MT)中间夹层局限于阳离子排列的影响。对于第一次提供近红外区域(8000-4000cm(-1))的振动带的详细分配,不仅适用于O-MT,还提供了用于选定的初级烷基胺和烷基铵盐,用于其制备。 IR光谱表明,两种类型的型,即NH 2对NH 3 +,以及阴离子对应物的性质,即氯化物VS MT层,显着影响了NH振动模式的位置在O-中的不同H键。 MTS。烷基链长对插入阳离子的布置具有显着影响。随着链长的增加,拉伸(VCH(2))和首先泛孔(2VCH(2))带向下波数移位,表明有利于有序的全反式塑壳的无序Gauche的量减少。 2V(AS)CH(2)频带比V(AS)XH(2)的频率显着较高(AS)XH(2)益处比miR的构象研究更好。

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