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Conductive polymer ultrafine fibers via electrospinning: Preparation, physical properties and applications

机译:通过静电纺丝导电聚合物超细纤维:制备,物理性质和应用

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摘要

Conductive polymers (CPs) are promising organic semiconductors for many essential applications because of their tunable physical/chemical properties, mechanical flexibility, low weight, reversible doping, good biocompatibility, and scalable production. However, CPs have not achieved their expected application potential in conventional processing methods. Electrospinning is a simple and highly versatile technique that can be used for mass fabrication of continuous ultrafine fibers from various polymers and composites. Electrospun fibers have many advantages, including uniformity, porosity, large surface areas, and mechanical strength, which present new application areas of CPs, and solve a number of problems related to the applicability of the polymers. However, as CPs are soluble and brittle, electrospinning requires a specific strategy. Different approaches, including direct electrospinning of CPs into fibers, co-electrospinning of blends of CPs and other spinnable carrier polymers, and synthesizing of electrospun fiber-template, have been developed to solve this problem. In this review, the recent achievements of fabricating CP-based ultrafine fibers using an electrospinning process are summarized, along with the characterization of their physical-chemical properties, such as electrical conductivity, wettability, and mechanical and thermal properties, which are further improved by modification. More emphasis is placed on the potential applications of electrospun CP ultrafine fibers in bio-/chemical sensors, artificial muscles, neural electrodes/interfaces, tissue regeneration, controlled drug release, flexible/stretchable electronic devices, energy storage, and electromagnetic interference shielding materials. Furthermore, the current challenges and future opportunities are also addressed.
机译:导电聚合物(CPS)是有机半导体,可用于许多基本应用,因为它们可调谐物理/化学性质,机械柔韧性,重量低,可逆掺杂,良好的生物相容性和可扩展的生产。然而,CPS在传统的加工方法中尚未实现其预期的应用潜力。静电纺丝是一种简单且高度通用的技术,可用于来自各种聚合物和复合材料的连续超细纤维的大规模制造。电纺纤维具有许多优点,包括均匀性,孔隙率,大的表面积和机械强度,该机械强度呈现出CPS的新应用领域,并解决了与聚合物适用性相关的问题。然而,随着CPS可溶于且脆性,静电纺丝需要特定的策略。已经开发出不同的方法,包括CPS的直接静电纺丝,CPS和其他可纺载体聚合物的共混物,以及Electrom纺丝纤维模板的合成,以解决这个问题。在该综述中,总结了使用静电纺丝工艺制造基于CP的超细纤维的成果,以及其物理化学性质的表征,例如导电性,润湿性和机械和热性能,其进一步改善修改。更强调的是生物/化学传感器,人造肌肉,神经电极/接口,组织再生,受控药物释放,柔性/可拉伸电子设备,储能和电磁干扰屏蔽材料的电纺CP超细纤维的潜在应用。此外,目前的挑战和未来的机会也得到了解决。

著录项

  • 来源
    《Progress in Materials Science》 |2021年第1期|100704.1-100704.44|共44页
  • 作者单位

    Qingdao Univ Coll Phys Collaborat Innovat Ctr Nanomat & Devices Qingdao 266071 Peoples R China;

    Qingdao Univ Coll Phys Collaborat Innovat Ctr Nanomat & Devices Qingdao 266071 Peoples R China|Qingdao Agr Univ Coll Sci & Informat Qingdao 266109 Peoples R China;

    Qingdao Univ Coll Phys Collaborat Innovat Ctr Nanomat & Devices Qingdao 266071 Peoples R China;

    Qingdao Univ Coll Phys Collaborat Innovat Ctr Nanomat & Devices Qingdao 266071 Peoples R China|Columbia Univ Dept Mech Engn New York NY 10027 USA;

    Natl Univ Singapore Ctr Nanofibers & Nanotechnol Singapore 119077 Singapore;

    Qingdao Univ Coll Phys Collaborat Innovat Ctr Nanomat & Devices Qingdao 266071 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrospinning; Conducting polymer; Nanofiber; Nanotube; Physical property; Tissue engineering; Nanodevice;

    机译:静电纺丝;导电聚合物;纳米纤维;纳米管;物理性质;组织工程;纳米型;

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