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Expandable Layered Hybrid Materials Based on Individual 1D Metalorganic Nanoribbons

机译:基于单个一维金属有机纳米带的可扩展分层混合材料

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摘要

Different metalorganic lamellar hybrid materials based on associated nanoribbons were synthesized by the use of alkyl–benzyl monocarboxylate spacers, containing alkyl tails with variable lengths, which acted like structural growing inhibitors. These molecular agents were perpendicularly located and coordinated to aluminium nodes in the interlayer space, controlling the separation between individual structure sub-units. The hybrid materials were studied by X-ray diffraction (XRD), chemical and thermogravimetrical analysis (TGA), nuclear magnetic resonance (NMR) and infrared spectroscopy (IR), and field emission scanning electron microscopy (FESEM)/transmission electron microscopy (TEM), showing their physicochemical properties. The specific capacity of the metalorganic materials to be exfoliated through post-synthesis treatments, using several solvents due to the presence of 1D structure sub-units and a marked hydrophobic nature, was also evidenced.
机译:通过使用烷基-苄基单羧酸盐间隔基合成不同的基于相关纳米带的金属有机层状杂化材料,间隔基包含长度可变的烷基尾,其作用类似于结构生长抑制剂。这些分子试剂垂直放置并与层间空间中的铝节点配位,从而控制各个结构子单元之间的分离。通过X射线衍射(XRD),化学和热重分析(TGA),核磁共振(NMR)和红外光谱(IR)以及场发射扫描电子显微镜(FESEM)/透射电子显微镜(TEM)研究了杂化材料),显示其理化性质。还证实了由于几种有机溶剂,由于存在一维结构亚单元和明显的疏水性,因此在合成后的处理中会剥落金属有机材料的比容量。

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