超临界流体
离子液体
纤维素
化学工程
材料科学
溶解
纳米孔
微型多孔材料
超临界干燥
超临界二氧化碳
多孔性
自愈水凝胶
吸附
化学
有机化学
复合材料
纳米技术
高分子化学
吸附
催化作用
工程类
作者
Costas Tsioptsias,Apostolis Stefopoulos,Ioannis Kokkinomalis,Lambrini Papadopoulou,Costas Panayiotou
出处
期刊:Green Chemistry
[Royal Society of Chemistry]
日期:2008-01-01
卷期号:10 (9): 965-965
被引量:164
摘要
Three lines of green chemistry were combined in this study, in order to produce porous materials with pore size distributions in the micro- and nano-scales. These lines are: (i) the renewable and biodegradable sources (cellulose), (ii) ionic liquids, and (iii) supercritical fluids. By dissolving cellulose in a room temperature ionic liquid and regenerating with water or methanol we obtained cellulose hydrogels and methanogels. The liquid mixtures were separated by vacuum distillation with high yield of recovery. The obtained gels were processed by supercritical carbon dioxide to give porous materials. A novel foaming procedure was applied to hydrogels in order to obtain microporous structures of cellulose and cellulose composites, while in alcogels the supercritical point drying method resulted in nanoporous aerogels. For elucidating physicochemical aspects involved in the two processes and for characterization of the produced materials, X-ray diffraction, sorption measurements (by a modified mass loss analysis and the BET method) and scanning electron microscopy were used. The role of various process parameters on the final porous structure was investigated.
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