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生物可降解材料、高性能纤维加工新技术、纳米纤维制备及结构性能、仿生材料成形技术

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Formation of the crystal structure of Lyocell fiber during drying. Holzforschung, 2009,63:23-27 A comparative study of bamboo Lyocell fiber and other regeneraeted cellulose fibers. Holzforschung, 2009,63:18-22 Electrospinning and rheology of regenerated Bombyx mori silk fibroin aqueous solutions: The effects of pH and concentration, Polymer, 2008, 48:2882-2885 Comparison of the structures and properties of lyocell fibers from high hemicellulose pulp and high α-cellulose pulp. Journal of Applied Polymer Science,2008,107(1): 636-641 Preparation and characterization of multiwalled carbon nanotubes/Lyocell composite fibers. Polymer-Korea, 2007, 31(5): 436-441 Morphology and Structure of electrospun mats from regenerated silk fibroin aqueous solutions with adjusting pH. International Journal of Biological Macromolecules,2007,41(4): 469-474 Effect of storage time and concentration on structure of regenerated silk fibroin solution. International Journal of Modern Physics B, 2006, 20 (25-27): 3878-3883 Effect of heat treatment on the structure and properties of Lyocell fibers. Journal of Applied Polymer Science,2006,101(3): 1738-1743 Effect of shearing on formation of silk fibers from regenerated Bombyx mori silk fibroin aqueous solution. International Journal of Biological Macromolecules, 2006, 38(3-5): 284-288 Structure of silk fibroin fibers made by an electrospinning process from a silk fibroin aqueous solution. Journal of Applied Polymer Science,2006,101(2): 961-968 Nano-carbon black filled Lyocell fiber as a precursor for carbon fiber. Journal of Applied Polymer Science,2006,99(1): 65-74

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