Production of Synthetic, Para-Aramid and Biopolymer Nanofibers by Immersion Rotary Jet-Spinning

被引:46
|
作者
Gonzalez, Grant M. [1 ]
MacQueen, Luke A. [1 ]
Lind, Johan U. [1 ]
Fitzgibbons, Stacey A. [1 ]
Chantre, Christophe O. [1 ]
Huggler, Isabelle [1 ]
Golecki, Holly M. [1 ]
Goss, Josue A. [1 ]
Parker, Kevin Kit [1 ]
机构
[1] Harvard Univ, Wyss Inst Biol Inspired Engn, Dis Biophys Grp, John A Paulson Sch Engn & Appl Sci, Cambridge, MA 02138 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
alginate; immersion rotary jet-spinning; nanofibers; nanofiber production; para-aramid; ALGINATE-NANOFIBERS; ALIGNED NANOFIBERS; ULTRAFINE FIBERS; ELECTROSPUN; POLYMER; MORPHOLOGY; SCAFFOLDS; NANOSTRUCTURES; INSTABILITY; FABRICATION;
D O I
10.1002/mame.201600365
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Nanofiber production platforms commonly rely on volatile carrier solvents or high voltages. Production of nanofibers comprised of charged polymers or polymers requiring nonvolatile solvents thus typically requires customization of spinning setup and polymer dope. In severe cases, these challenges can hinder fiber formation entirely. Here, a versatile system is presented which addresses these challenges by employing centrifugal force to extrude polymer dope jet through an air gap, into a flowing precipitation bath. This voltage-free approach ensures that nanofiber solidification occurs in liquid, minimizing surface tension instability that results in jet breakup and fiber defects. In addition, nanofibers of controlled size and morphology can be fabricated by tuning spinning parameters including air gap length, spinning speed, poly-mer concentration, and bath composition. To demonstrate the versatility of our platform, para-aramid (e.g., Kevlar) and biopolymer (e.g., DNA, alginate) nanofibers are produced that cannot be readily produced using standard nanofiber production methods.
引用
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页数:11
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