以壳聚糖微粒为增强体,离子液体为纤维素溶剂,采用冷冻干燥法成功制备了壳聚糖/纤维素生物质发泡复合材料.利用SEM、XRD和TGA表征多孔复合材料微观结构、结晶性能以及热稳定性,测试了其孔隙率和吸水性能.实验结果表明:壳聚糖/纤维素多孔复合材料具有三维相互贯通的微孔结构,壳聚糖粉体有助于孔洞结构的形成,TGA结果显示纤维素多孔材料的热稳定性能得以提高.XRD结果显示纤维素经离子液体溶解再生后晶型结构由纤维素Ⅰ转化为纤维素Ⅱ.纤维素含量较低(≤4wt%)时,随1wt%壳聚糖粉体的加入,孔隙率明显提高.壳聚糖/纤维素多孔复合材料的力学性能随纤维素含量的增加而不断提高,而吸水性能有所下降.壳聚糖与纤维素质量比为1∶3时,壳聚糖/纤维素多孔复合材料孔隙率为72.7%,吸水率和相对保湿率分别为28.0 g/g和17.6 g/g,断裂强度和断裂伸长率分别为0.32 MPa和25.4%,能够作为一种优良的吸附材料用于制备高性能的医用敷料.
参考文献
[1] | Shaya Mahmoudian;Mat Uzir Wahit;A.F. Ismail.Preparation of regenerated cellulose/montmorillonite nanocomposite films via ionic liquids[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20124(4):1251-1257. |
[2] | 陈婧;张金明;陈韦韦;丰晔;张军.纤维素萘甲酸酯在离子液体中的均相合成[J].高分子学报,2013(10):1235-1240. |
[3] | Meiling Deng;Qian Zhou;Anke Du;Johannes van Kasteren;Yuzhong Wang.Preparation of nanoporous cellulose foams from cellulose-ionic liquid solutions[J].Materials Letters,200921(21):1794-1796. |
[4] | Costas Tsioptsias;Apostolis Stefopoulos;Ioannis Kokkinomalis.Development of micro- and nano-porous composite materials by processing cellulose with ionic liquids and supercritical CO2[J].Green chemistry,20089(9):965-971. |
[5] | Dieter Klemm;Brigitte Heublein;Hans-Peter Fink;Andreas Bohn.Cellulose:Fascinating Biopolymer and Sustainable Raw Material[J].Angewandte Chemie,200522(22):3358-3393. |
[6] | Chunyu Chang;Lina Zhang.Cellulose-based hydrogels: Present status and application prospects[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20111(1):40-53. |
[7] | Jayakumar, R.;Prabaharan, M.;Kumar, P. T. Sudheesh;Nair, S. V.;Tamura, H. ..Biomaterials based on chitin and chitosan in wound dressing applications[J].Biotechnology Advances: An International Review Journal,20113(3):322-337. |
[8] | 肖秀峰;丁晓红;刘淑琼;钟章裕;刘榕芳.壳聚糖/聚己内酯-聚乳酸多孔支架制备和表征[J].复合材料学报,2010(6):100-105. |
[9] | Kofuji K;Ito T;Murata Y;Kawashima S.Biodegradation and drug release of chitosan gel beads in subcutaneous air pouches of mice.[J].Biological & pharmaceutical bulletin,20012(2):205-208. |
[10] | Singla AK;Chawla M.Chitosan: some pharmaceutical and biological aspects--an update.[J].Journal of Pharmacy and Pharmacology,20018(8):1047-1067. |
[11] | Raafat D;von Bargen K;Haas A;Sahl HG.Insights into the mode of action of chitosan as an antibacterial compound[J].Applied and Environmental Microbiology,200812(12):3764-3773. |
[12] | Kondo T;Kasai W;Brown RM.Formation of nematic ordered cellulose and chitin[J].Cellulose,20043/4(3/4):463-474. |
[13] | Dao Zhou;Lina Zhang;Shenglian Guo.Mechanisms of lead biosorption on cellulose/chitin beads[J].Water research: A journal of the international water association,200516(16):3755-3762. |
[14] | Nadda Chiaoprakobkij;Neeracha Sanchavanakit;Keskanya Subbalekha.Characterization and biocompatibility of bacterial cellulose/alginate composite sponges with human keratinocytes and gingival fibroblasts[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20113(3):548-553. |
[15] | Ying Pei;Juan Yang;Pan Liu.Fabrication, properties and bioapplications of cellulose/collagen hydrolysate composite films[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20132(2):1752-1760. |
[16] | Zhang LN.;Guo J.;Du YM..Morphology and properties of cellulose/chitin blends membranes from NaOH/thiourea aqueous solution[J].Journal of Applied Polymer Science,20028(8):2025-2032. |
[17] | Akihiko Takegawa;Masa-aki Murakami;Yoshiro Kaneko.Preparation of chitin/cellulose composite gels and films with ionic liquids[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20101(1):85-90. |
[18] | Feng, L;Chen, ZI.Research progress on dissolution and functional modification of cellulose in ionic liquids[J].Journal of Molecular Liquids,20081/3(1/3):1-5. |
[19] | Luo K;Yin JB;Khutoryanskaya OV;Khutoryanskiy VV.Mucoadhesive and elastic films based on blends of chitosan and hydroxyethylcellulose[J].Macromolecular bioscience,20082(2):184-192. |
[20] | Quan, SL;Kang, SG;Chin, IJ.Characterization of cellulose fibers electrospun using ionic liquid[J].Cellulose,20102(2):223-230. |
[21] | Liang SM;Zhang L;Xu H.Morphology and permeability of cellulose/chitin blend membranes[J].Journal of Membrane Science,20072(2):19-28. |
[22] | Dae-Young Kim;Yoshiharu Nishiyama;Masahisa Wada;Shigenori Kuga.High-yield carbonization of cellulose by sulfuric acid impregnation[J].Cellulose,20011(1):29-33. |
[23] | Ping Lu;You-Lo Hsieh.Preparation and properties of cellulose nanocrystals: Rods, spheres, and network[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20102(2):329-336. |
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