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用于多方面应用的电纺智能混合纳米纤维

Electrospun Smart Hybrid Nanofibers for Multifaceted Applications.

作者信息

Nirwan Viraj P, Amarjargal Altangerel, Hengsbach Rebecca, Fahmi Amir

机构信息

Faculty of Technology and Bionics, Rhine-Waal University of Applied Science, Marie-Curie-Straße 1, 47533, Kleve, Germany.

Power Engineering School, Mongolian University of Science and Technology, 8th khoroo, Baga toiruu, Sukhbaatar district, Ulaanbaatar, 14191, Mongolia.

出版信息

Macromol Rapid Commun. 2024 Oct 14:e2400617. doi: 10.1002/marc.202400617.

Abstract

Smart electrospun hybrid nanofibers represent a cutting-edge class of functional nanostructured materials with unique collective properties. This review aims to provide a comprehensive overview of the applications of smart electrospun hybrid nanofibers in the fields of energy, catalysis, and biomedicine. Electrospinning is a powerful tool to fabricate different types of nanofibers' morphologies with precise control over structure and compositions. Through the incorporation of various functional components, such as nanoparticles, nanomoieties, and biomolecules, into the (co)polymer matrix, nanofibers can be tailored into smart hybrid materials exhibiting responsiveness to external stimuli such as temperature, pH, or light among others. Herein recent advancements in fabrication strategies for electrospun smart hybrid nanofibers are discussed, focusing on different electrospinning tools aimed at tailoring and developing smart hybrid nanofibers. These strategies include surface functionalization, doping, and templating, which enable fine-tuning of mechanical strength, conductivity, and biocompatibility. The review explores the challenges and recent progress in the development of smart hybrid nanofibers. Issues such as scalability, reproducibility, biocompatibility, and environmental sustainability are identified as key for improvement. Furthermore, the applications of smart nanofibers in biomedicine, environment, energy storage, and smart textiles underscore their potential to address the challenges in development of nanostructured materials for emerging technologies.

摘要

智能静电纺丝复合纳米纤维是一类前沿的功能性纳米结构材料,具有独特的集体特性。本综述旨在全面概述智能静电纺丝复合纳米纤维在能源、催化和生物医学领域的应用。静电纺丝是一种强大的工具,可精确控制结构和组成,制造出不同类型的纳米纤维形态。通过将各种功能成分,如纳米颗粒、纳米部分和生物分子,掺入(共)聚合物基质中,纳米纤维可以被定制成对温度、pH值或光等外部刺激具有响应性的智能复合材料。本文讨论了静电纺丝智能复合纳米纤维制造策略的最新进展,重点介绍了旨在定制和开发智能复合纳米纤维的不同静电纺丝工具。这些策略包括表面功能化、掺杂和模板化,可实现对机械强度、导电性和生物相容性的微调。本综述探讨了智能复合纳米纤维开发中的挑战和最新进展。可扩展性、可重复性、生物相容性和环境可持续性等问题被确定为改进的关键。此外,智能纳米纤维在生物医学、环境、能量存储和智能纺织品中的应用凸显了它们在应对新兴技术纳米结构材料开发挑战方面的潜力。

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