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超临界二氧化碳剥离黏土并制备聚合物/黏土气凝胶。

Clay exfoliation and polymer/clay aerogels by supercritical carbon dioxide.

机构信息

Department of Chemistry and Biology and INSTM Research Units, Università degli Studi di Salerno Fisciano, Italy.

Department of Chemistry, Materials and Chemical Engineering, Politecnico di Milano Milano, Italy ; CNR, Istituto per lo Studio delle Macromolecole, National Research Council Milano, Italy.

出版信息

Front Chem. 2013 Nov 13;1:28. doi: 10.3389/fchem.2013.00028. eCollection 2013.

Abstract

Supercritical carbon dioxide (scCO2) treatments of a montmorillonite (MMT) intercalated with ammonium cations bearing two long hydrocarbon tails (organo-modified MMT, OMMT) led to OMMT exfoliation, with loss of the long-range order in the packing of the hydrocarbon tails and maintenance of the long-range order in the clay layers. The intercalated and the derived exfoliated OMMT have been deeply characterized, mainly by X-ray diffraction analyses. Monolithic composite aerogels, with large amounts of both intercalated and exfoliated OMMT and including the nanoporous-crystalline δ form of syndiotactic polystyrene (s-PS), have been prepared, by scCO2 extractions of s-PS-based gels. Also for high OMMT content, the gel and aerogel preparation procedures occur without re-aggregation of the exfoliated clay, which is instead observed for other kinds of polymer processing. Aerogels with the exfoliated OMMT have more even dispersion of the clay layers, higher elastic modulus and larger surface area than aerogels with the intercalated OMMT. Extremely light materials with relevant transport properties could be prepared. Moreover, s-PS-based aerogels with exfoliated OMMT could be helpful for the handling of exfoliated clay minerals.

摘要

超临界二氧化碳(scCO2)处理层间带有两个长烃尾的铵阳离子的蒙脱石(MMT)(有机改性蒙脱石,OMMT)导致 OMMT 剥离,烃尾的堆积失去远程有序,而粘土层的远程有序得以保持。插层和衍生的剥离 OMMT 已通过 X 射线衍射分析等方法进行了深入表征。通过 scCO2 萃取基于 s-PS 的凝胶,制备了大量插层和剥离 OMMT 并包含间规聚苯乙烯(s-PS)纳米多孔结晶 δ 形式的整体复合气凝胶。即使对于高 OMMT 含量,凝胶和气凝胶的制备过程也不会发生剥离粘土的再聚集,而对于其他类型的聚合物加工则会观察到再聚集。与插层 OMMT 相比,具有剥离 OMMT 的气凝胶具有更均匀的粘土层分散性、更高的弹性模量和更大的表面积。可以制备具有相关传输性能的极轻材料。此外,具有剥离 OMMT 的基于 s-PS 的气凝胶可能有助于处理剥离的粘土矿物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b370/3982576/00b1fdd2342a/fchem-01-00028-g0001.jpg

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