Liang Songmiao, Wu Junjie, Tian Huafeng, Zhang Lina, Xu Jian
Department of Chemistry, Wuhan University, Wuhan, P.R. China.
ChemSusChem. 2008;1(6):558-63. doi: 10.1002/cssc.200800003.
Cellulose gel membranes have been prepared by a pre-gelation method employing cellulose solutions in aqueous NaOH-thiourea obtained at low temperature. The cellulose gels were then swollen by low-molecular-weight polyethylene glycol (PEG; MW<1000 g mol(-1)), and the morphology, structure and mechanical properties of the cellulose/PEG gels were studied by various techniques. The gels exhibit high mechanical performance, and the tensile strength of the gel membranes increases sharply with an increase in the molecular weight of PEG from 200 to 800 g mol(-1). Moreover, their elongation at break remains stable at 100 %. PEG800 efficiently improves the optical transmittance of the gel membranes at ambient temperature, which is about five times greater than that of a normal cellulose hydrogel membrane. A strong hydrogen-bonding interaction occurs between PEG and cellulose leading to a homogeneous structure, high mechanical strength and good transparency of the gel membranes.
纤维素凝胶膜是通过预凝胶化方法制备的,该方法采用在低温下获得的纤维素在NaOH-硫脲水溶液中的溶液。然后用低分子量聚乙二醇(PEG;MW<1000 g mol(-1))使纤维素凝胶溶胀,并通过各种技术研究纤维素/PEG凝胶的形态、结构和力学性能。这些凝胶表现出高机械性能,并且凝胶膜的拉伸强度随着PEG分子量从200 g mol(-1)增加到800 g mol(-1)而急剧增加。此外,它们的断裂伸长率保持在100%稳定。PEG800在环境温度下有效地提高了凝胶膜的透光率,这比普通纤维素水凝胶膜的透光率大约高五倍。PEG与纤维素之间发生强烈的氢键相互作用,导致凝胶膜具有均匀的结构、高机械强度和良好的透明度。