Macromolecule’s Orientation in a Nanofiber by Bubble Electrospinning  

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作  者:Dan Tian Danni Yu Chunhui He 

机构地区:[1]School of Science,Xi’an University of Architecture and Technology,Xi’an,710055,China [2]National Engineering Laboratory for Modern Silk,College of Textile and Clothing Engineering,Soochow University,Suzhou,China [3]School of Civil Engineering,Xi’an University of Architecture&Technology,Xi’an,710055,China

出  处:《Fluid Dynamics & Materials Processing》2021年第4期711-720,共10页流体力学与材料加工(英文)

基  金:the Foundation of Xi’an University of Architecture and Technology in 2020[Tian Dan];The Natural Science Foundation of Shaan Xi Province in 2019[2019JQ-755];the Natural Science Foundation of Shaanxi Provincial Department of Education in 2019[19JK0462].

摘  要:In the search for sustainable alternatives to harmful synthetic fibers,an increasing amount of research focuses on biomimicry and natural fibers.Sea silk is an exceptional textile material.It is a kind of natural silk produced using the long silky filaments secreted by a specific bivalve mollusk(Pinna nobilis);now at edge of extinction.This paper suggests a simple but effective way to prepare artificial sea silk from Mytilus edulis.A sea silk solution is prepared using a Mytilus edulis protein,and a polyvinyl alcohol(PVA)solution is mixed with the sea silk solution in order to produce artificial sea silk through a bubble electrospinning technique.The effects of the sea silk concentration on the nanofiber’s morphology and mechanical properties are studied experimentally.

关 键 词:MOLLUSK sea-silk solution collagenous fibers bubble electrospinning 

分 类 号:TS1[轻工技术与工程—纺织科学与工程]

 

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