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由富含支链淀粉的淀粉离心纺制的淀粉基纤维。

Centrifugally spun starch-based fibers from amylopectin rich starches.

机构信息

National Engineering Lab for Textile Fiber Materials and Processing Technology, College of Materials and Textiles, Zhejiang Sci-Tech University, 310018 China.

National Engineering Lab for Textile Fiber Materials and Processing Technology, College of Materials and Textiles, Zhejiang Sci-Tech University, 310018 China.

出版信息

Carbohydr Polym. 2016 Feb 10;137:459-465. doi: 10.1016/j.carbpol.2015.10.079. Epub 2015 Oct 28.

Abstract

Centrifugal spinning and electrospinning have proved to be effective techniques for fabricating micro-to-nanofibers. However, starches of amylopectin content above 65% cannot be fabricated to fiber by electrospinning. This paper is focus on the centrifugal spinnability of amylopectin rich starches. We investigated the amylopectin content of starches by Dual-wavelength colorimetry, studied the rheological properties of starch dopes to determine entanglement concentration (ce) by rotary rheometer. Results indicated that amylopectin rich native corn and potato starches, which with amylopectin content higher than 65%, were suitable for centrifugal spinning to micro-to-nanofibers. Additionally, starch-based fibers were successfully fabricated from the amylose rich corn starch as well. Rheological studies showed that the entanglement concentration (ce) of starch solution was crucial for successful centrifugal spinning.

摘要

离心纺丝和静电纺丝已被证明是制造微纳纤维的有效技术。然而,支链淀粉含量高于 65%的淀粉无法通过静电纺丝制成纤维。本文主要研究支链淀粉含量高的淀粉的离心纺丝性能。我们通过双波长比色法研究了淀粉的支链淀粉含量,用旋转流变仪研究了淀粉膏的流变性能,以确定缠结浓度(ce)。结果表明,支链淀粉含量高于 65%的天然玉米和马铃薯淀粉适合离心纺丝成微纳纤维。此外,还成功地从支链淀粉含量高的玉米淀粉中制备出了基于淀粉的纤维。流变学研究表明,淀粉溶液的缠结浓度(ce)对于成功的离心纺丝至关重要。

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