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Polymer intercalation synthesis of glycoboehmite nanosheets

机译:聚合物嵌入合成甘油型纳米液

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摘要

Novel materials based on the aluminum oxyhydroxide boehmite phase were prepared using a glycothermal reaction in 1,4-butanediol. Under the synthesis conditions, the atomic structure of the boehmite phase is altered by the glycol solvent in place of the interlayer hydroxyl groups, creating glycoboehmite. The structure of glycoboehmite was examined in detail to determine that glycol molecules are intercalated in a bilayer structure, which would suggest that there is twice the expansion identified previously in the literature. This precursor phase enables synthesis of two new phases that incorporate either polyvinylpyrrolidone or hydroxylpropyl cellulose nonionic polymers. These new materials exhibit changes in morphology, thermal properties, and surface chemistry. All the intercalated phases were investigated using PXRD, HRSTEM, SEM, FT-IR, TGA/DSC, zeta potential titrations, and specific surface area measurement. These intercalation polymers are non-ionic and interact through wetting interactions and hydrogen bonding, rather than by chemisorption or chelation with the aluminum ions in the structure.
机译:使用1,4-丁二醇中的糖热反应制备基于氧化铝勃姆矿石相的新型材料。在合成条件下,通过二醇溶剂代替层间羟基,产生勃姆矿石相的原子结构,产生甘油。详细研究了糖钴沸石的结构以确定二醇分子在双层结构中插入,这表明在文献中鉴定了两倍。该前体阶段能够合成两种新相,其掺入聚乙烯基吡咯烷酮或羟丙基纤维素非离子聚合物。这些新材料表现出形态,热性能和表面化学的变化。使用PXRD,HRSEM,SEM,SEM,FT-IR,TGA / DSC,ZETA电位滴定和特定表面积测量来研究所有插入相。这些嵌入聚合物是非离子的并且通过润湿相互作用和氢键相互作用,而不是通过化学吸附或螯合与结构中的铝离子。

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