4.8 Article

Highly flexible, nonflammable and free-standing SiC nanowire paper

期刊

NANOSCALE
卷 7, 期 14, 页码 6374-6379

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5nr00776c

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资金

  1. Zhejiang Sci-Tech University
  2. Visiting Scholar Foundation from State Key Lab of Silicon Materials, Zhejiang University [SKL2013-3]
  3. Program of Graduate Innovation Research [2014XSKY22]
  4. Cultivation Fund Program for Excellent Dissertion of Zhejiang Sci-Tech University [2014YSPY02]

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Flexible paper-like semiconductor nanowire materials are expected to meet the criteria for some emerging applications, such as components of flexible solar cells, electrical batteries, supercapacitors, nano-composites, bendable or wearable electronic or optoelectronic components, and so on. As a new generation of wide-bandgap semiconductors and reinforcements in composites, SiC nanowires have advantages in power electronic applications and nanofiber reinforced ceramic composites. Herein, freestanding SiC nanowire paper consisting of ultralong single-crystalline SiC nanowires was prepared through a facile vacuum filtration approach. The ultralong SiC nanowires were synthesized by a sol-gel and carbothermal reduction method. The flexible paper composed of SiC nanowires is similar to 100 nm in width and up to several hundreds of micrometers in length. The nanowires are intertwisted with each other to form a three-dimensional network-like structure. SiC nanowire paper exhibits high flexibility and strong mechanical stability. The refractory performance and thermal stability of SiC nanowire paper were also investigated. The paper not only exhibits excellent nonflammability in fire, but also remains well preserved without visible damage when it is heated in an electric oven at a high temperature (1000 degrees C) for 3 h. With its high flexibility, excellent nonflammability, and high thermal stability, the free-standing SiC nanowire paper may have the potential to improve the ablation resistance of high temperature ceramic composites.

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