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In situ synthesis of polyelectrolyte/layered double hydroxide intercalation compounds

机译:原位合成聚电解质/层状双氢氧化物嵌入化合物

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摘要

Intercalation is usually achieved through the insertion of guest species into a pre-formed layered compound. Herein, we report our exploration of the formation of intercalation compounds through a direct growth method using cationic layered double hydroxide (LDH) and anionic polyelectrolytes. LDH precursors and intercalant molecules were used as the raw materials to directly grow layered intercalation compounds through a hydrothermal method. Three poly(sodium 4-styrene-sulfonate) (PSSNa) with different molecular weights (i.e., 70000, 200000, and 500000) were systematically studied as an intercalant in terms of their effect on the growth of intercalation compounds. The mass ratio of PSSNa and LDH was also varied to study how the formulation ratio of the raw materials influences the growth of the PSSNa/LDH intercalation compounds. These directly synthesized PSSNa/LDH intercalation compounds were characterized by X-ray diffraction, Fourier transform infrared spectroscopy, and scanning electron microscopy, based on which their growth mechanism was discussed. This direct growth method offers an alternative for large-scale production of intercalation compounds for potential commercial applications.
机译:通常通过将客体物种插入预先形成的层状化合物来实现嵌入。在此,我们通过使用阳离子层叠双氢氧化物(LDH)和阴离子聚电解质的直接生长方法报告我们对嵌入化合物形成的探索。使用LDH前体和插入分子作为原料,以通过水热法直接生长层状嵌入化合物。在其对嵌入化合物生长的影响方面,系统地研究了不同分子量(即70000,200000和500000)的三种聚(即70000,200000和500000)的聚(即70000,200000和500000)。 SSNA和LDH的质量比也变化,以研究原料的配方比如何影响PSSNA / LDH嵌入化合物的生长。这些直接合成的PSSNA / LDH嵌入化合物的特征在于X射线衍射,傅里叶变换红外光谱和扫描电子显微镜,基于探讨其生长机制。这种直接增长方法为潜在商业应用提供了替代嵌入化合物的替代方案。

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