纺织学报 ›› 2010, Vol. 31 ›› Issue (11): 16-19.

• 纤维材料 • 上一篇    下一篇

丝素蛋白/醋酸纤维素共混纤维毡的制备与表征

周伟涛1,2;何建新2,3;杜姗3;崔世忠1,2;高卫东1

  

  1. 1. 江南大学纺织服装学院 2. 中原工学院河南省高等学校功能性纺织面料重点学科开放实验室 3. 东华大学纺织面料技术教育部重点实验室
  • 收稿日期:2009-10-30 修回日期:2010-04-03 出版日期:2010-11-15 发布日期:2010-11-15
  • 通讯作者: 崔世忠

Preparation and characterization of silk fibroin/cellulose acetate blend fiber felt

ZHOU Weitao1,2; HE Jianxin2,3;DU Shan3;CUI Shizhong1,2;GAO Weidong1   

  1. 1. School of Textile & Clothing, Jiangnan University 2. Key Laboratory of Functional Textiles, the Education Department of Henan Province, Zhongyuan University of Technology 3.Key Laboratory of Textile Science & Technology, Ministry of Education, Donghua University
  • Received:2009-10-30 Revised:2010-04-03 Online:2010-11-15 Published:2010-11-15

摘要: 将不同质量比的丝素蛋白(SF)/醋酸纤维素(CA)溶于甲酸中,配置成共混溶液进行静电纺丝,得到SF/CA共混纤维毡。利用SEM、XRD对其结构进行测试表征。结果表明:SF中添加少量CA(<10%),SF的可纺性显著提高,添加10%CA时,可纺性最好,所得共混电纺纤维细且均匀,直径为50~300nm;CA添加量大于30% 时,可纺性恶化,出现大量的珠状物,且纤维粘连、不连续,形成树枝状结构。XRD分析表明,添加少量CA(<10%)能诱导SF分子构象由无规卷曲向β折叠转变,但CA添加量大于30%时,SF与CA两者分相。

Abstract: The blend solution prepared by dissolving Silk fibroin (SF) and cellulose acetate (CA) in formic acid at different mass concentrations was electrospun into SF/CA blend fibers and then processed into SF/CA felt. The SF/CA fiber felt was studied by SEM and XRD. The results showed that the spinnability of SF was remarkably improved with a small quantity of CA (no more than 10%), and the blend fibers were fine and uniform with the fiber diameters ranging from 50 nm to 300 nm. When CA content was 10%, the SF/CA blends showed excellent spinnability without any beads or droplets. However, the spinnability of SF/CA deteriorated seriously when the content of CA was more than 30%, and the electrospun SF/CA blend nanofibers were discontinuous, sticky, and forming dendritic structure with lot of beads. The XRD analysis showed that adding a small quantity of CA (no more than 10%) could induce the conformation transition of SF molecules transforming from random coil to β-sheet. Nevertheless, the phase separation was observed between SF and CA in blend nanofibers when the content of CA was more than 30%.

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