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用于传感器应用的基于碳纳米纤维的功能纳米材料。

Carbon Nanofiber-Based Functional Nanomaterials for Sensor Applications.

作者信息

Wang Zhuqing, Wu Shasha, Wang Jian, Yu Along, Wei Gang

机构信息

AnHui Provice Key Laboratory of Optoelectronic and Magnetism Functional Materials, Anqing Normal University, Anqing 246011, China.

College of Chemistry and Chemical Engineering, Qingdao University, Qingdao 266077, China.

出版信息

Nanomaterials (Basel). 2019 Jul 22;9(7):1045. doi: 10.3390/nano9071045.

Abstract

Carbon nanofibers (CNFs) exhibit great potentials in the fields of materials science, biomedicine, tissue engineering, catalysis, energy, environmental science, and analytical science due to their unique physical and chemical properties. Usually, CNFs with flat, mesoporous, and porous surfaces can be synthesized by chemical vapor deposition and electrospinning techniques with subsequent chemical treatment. Meanwhile, the surfaces of CNFs are easy to modify with various materials to extend the applications of CNF-based hybrid nanomaterials in multiple fields. In this review, we focus on the design, synthesis, and sensor applications of CNF-based functional nanomaterials. The fabrication strategies of CNF-based functional nanomaterials by adding metallic nanoparticles (NPs), metal oxide NPs, alloy, silica, polymers, and others into CNFs are introduced and discussed. In addition, the sensor applications of CNF-based nanomaterials for detecting gas, strain, pressure, small molecule, and biomacromolecules are demonstrated in detail. This work will be beneficial for the readers to understand the strategies for fabricating various CNF-based nanomaterials, and explore new applications in energy, catalysis, and environmental science.

摘要

由于其独特的物理和化学性质,碳纳米纤维(CNFs)在材料科学、生物医学、组织工程、催化、能源、环境科学和分析科学等领域展现出巨大潜力。通常,具有扁平、中孔和多孔表面的碳纳米纤维可通过化学气相沉积和静电纺丝技术并随后进行化学处理来合成。同时,碳纳米纤维的表面易于用各种材料进行修饰,以扩展基于碳纳米纤维的杂化纳米材料在多个领域的应用。在本综述中,我们聚焦于基于碳纳米纤维的功能纳米材料的设计、合成及传感器应用。介绍并讨论了通过向碳纳米纤维中添加金属纳米颗粒(NPs)、金属氧化物 NPs、合金、二氧化硅、聚合物等制备基于碳纳米纤维的功能纳米材料的策略。此外,还详细展示了基于碳纳米纤维的纳米材料在检测气体、应变、压力、小分子和生物大分子方面的传感器应用。这项工作将有助于读者理解制备各种基于碳纳米纤维的纳米材料的策略,并探索在能源、催化和环境科学中的新应用。

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