Advanced Fiber Materials, Volume. 6, Issue 6, 00466(2024)

Vortex-Inspired Hydrodynamic Drafting Spinning Platform for Large-Scale Preparation of Hydrogel Fibers

Jinhua Dong1、†, Lei Wang2,3、†, Yi Chen2,3、†, Boyu Xu2,3, Hai Tang2,3, Ziqiang Zhao1, Weikang Lin2,3, Huijing Hu1, Peihang Li1, Runfeng Cao2,3, Long Wang2,3, Lei Zhang2,3, Yunlang She2,3, Bingyao Deng1, Weiyan Sun2,3、*, Chang Chen2,3、**, and Dawei Li1、***
Author Affiliations
  • 1Nonwoven Technology Laboratory, College of Textile Science and Engineering, Jiangnan University, Wuxi, 214122 Jiangsu, China
  • 2Department of Thoracic Surgery, Shanghai Pulmonary Hospital, Tongji University School of Medicine, Shanghai 200092, China
  • 3Shanghai Engineering Research Center of Lung Transplantation, Shanghai, 200433, China
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    References(38)

    [8] [8] Jiang S, Deng J, Jin Y, Qian B, Lv W, Zhou Q, Mei E, Neisiany RE, Liu Y, You Z, Pan J. Breathable, antifreezing, mechanically skin-like hydrogel textile wound dressings with dual antibacterial mechanisms. Bioact Mater. 2023;21:313.

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    Jinhua Dong, Lei Wang, Yi Chen, Boyu Xu, Hai Tang, Ziqiang Zhao, Weikang Lin, Huijing Hu, Peihang Li, Runfeng Cao, Long Wang, Lei Zhang, Yunlang She, Bingyao Deng, Weiyan Sun, Chang Chen, Dawei Li. Vortex-Inspired Hydrodynamic Drafting Spinning Platform for Large-Scale Preparation of Hydrogel Fibers[J]. Advanced Fiber Materials, 2024, 6(6): 00466

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    Paper Information

    Category: Research Articles

    Received: Feb. 27, 2024

    Accepted: Jun. 25, 2024

    Published Online: Jan. 23, 2025

    The Author Email: Weiyan Sun (sweiyan1@163.com), Chang Chen (chenthoracic@163.com), Dawei Li (ldw@jiangnan.edu.cn)

    DOI:10.1007/s42765-024-00466-w

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