纤维素内塑化材料是通过接枝或化学修饰的方法使其内部塑化,克服在塑化和使用过程中增塑剂的迁移和流失问题,从而提高材料的综合性能.文中综述了近年来对纤维素进行酯化内增塑的研究进展,重点讨论了醋酸纤维素接枝己内酯、聚乳酸、聚乙二醇等可降解高分子的方法、途径及应用.
参考文献
[1] | Kevin J. Edgar;Charles M. Buchanan;John S. Debenham;Paul A. Rundquist;Brian D. Seiler;Michael C. Shelton;Debra Tindall .Advances in cellulose ester performance and application[J].Progress in Polymer Science,2001(9):1605-1688. |
[2] | MASAYA O;SHIGEYUKI T;HAJIME N et al.[P].JP 60188401,1985-09-25. |
[3] | SHIRAISHI N;YOSHIOKA M;KOSEKI H et al.[P].JP 11255870,1999-09-21. |
[4] | NAGAHIKO Y;SUSUMU K;HIRONORI H .[P].JP 63221101,1988-09-14. |
[5] | ROLF M;JOACHIM S;HOLGER W .[P].US 5480922,1996-01-02. |
[6] | YOSHIOKA M;HAGIWARA N;SHIRAISHI N .[J].Cellulose,1999,6(03):193-212. |
[7] | Yoshioka M;Takabe K;Sugiyama J;Nishio Y .Newly developed nanocomposites from cellulose acetate/layered silicate/poly( epsilon -caprolactone): synthesis and morphological characterization.[J].Journal of wood science,2006(2):121-127. |
[8] | 殷敬华;莫志深.现代高分子物理学[M].北京:科学出版社,2001:393-395. |
[9] | SHOKO A;MISA O;YOSHITAKA A .[P].JP 2003342416,2003-12-03. |
[10] | Yoshikuni Teramoto;Yoshiyuki Nishio .Cellulose diacetate-graft-poly(lactic acid)s: sythesis of wide-ranging compositions and their thermal and mechanical properties[J].Polymer: The International Journal for the Science and Technology of Polymers,2003(9):2701-2709. |
[11] | KAWAI F .[J].Applied Microbiology and Biotechnology,2002,58(01):30-38. |
[12] | 姜勇,丁恩勇,黎国康.聚乙二醇/二醋酸纤维素相变材料的组成与储能性能间的关系[J].高分子学报,2000(06):681-687. |
[13] | 游天彪,谭英,唐青,胡艾希.二醋酸纤维素与聚乙二醇接枝共聚物的制备与表征[J].应用化学,2006(03):346-348. |
[14] | 宋鏐毅,马凤国,邵自强,谭惠民.合成纤维素高级脂肪酸酯的研究进展[J].高分子材料科学与工程,2002(02):11-15. |
[15] | Jandura P.;Riedl B.;Kokta BV. .Fibrous long-chain organic acid cellulose esters and their characterization by diffuse reflectance FTIR spectroscopy, solid-state CP/MAS C-13-NMR, and X-ray diffraction[J].Journal of Applied Polymer Science,2000(7):1354-1365. |
[16] | Matsumura H.;Glasser WG.;Sugiyama J. .Cellulosic nanocomposites. I. Thermally deformable cellulose hexanoates from heterogeneous reaction[J].Journal of Applied Polymer Science,2000(13):2242-2253. |
[17] | Matsumura H.;Glasser WG. .Cellulosic nanocomposites. II. Studies by atomic force microscopy[J].Journal of Applied Polymer Science,2000(13):2254-2261. |
[18] | EDGAR K J;BOGAN R T .[P].US 5750677,1998-05-12. |
[19] | EDGAR K J;BOGAN R T .[P].US 5929229,1999-07-27. |
[20] | HEINZE T;LIEBERT T;PFEIFFER K S et al.[J].Cellulose,2003,10(03):283-296. |
[21] | Heinze T.;Koschella A.;Kull AH.;Klohr EA.;Koch W.;Dicke R. .Effective preparation of cellulose derivatives in a new simple cellulose solvent[J].Macromolecular chemistry and physics,2000(6):627-631. |
[22] | SAMARANAYAKE G;GLASSER W G .[J].Carbohydrate Polymers,1993,22(01):1-7. |
[23] | C.Satge;B.Verneuil;P.Branland;R.Granet;P.Krausz;J.Rozier;C.Petit .Rapid homogeneous esterification of cellulose induced by microwave irradiation[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,2002(3):373-376. |
[24] | SATGE C;GRANET R;VERNEUIL B et al.[J].Comptes Rendus Chimie,2004,7(02):135-142. |
[25] | Joly N;Granet R;Branland P;Verneuil B;Krausz P .New methods for acylation of pure and sawdust-extracted cellulose by fatty acid derivatives - Thermal and mechanical analyses of cellulose-based plastic films[J].Journal of Applied Polymer Science,2005(3):1266-1278. |
[26] | WANG P L;TAO B Y .[J].Journal of Applied Polymer Science,1994,52(06):755-761. |
[27] | Memmi A;Granet R;Gahbiche MA;Fekih A;Bakhrouf A;Krausz P .Fatty esters of cellulose from olive pomace and barley bran: Improved mechanical properties by metathesis crosslinking[J].Journal of Applied Polymer Science,2006(1):751-755. |
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