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Flexible SiC/SiN Composite Nanofibers with in Situ Embedded Graphite for Highly Efficient Electromagnetic Wave Absorption. | LitMetric

Flexible SiC/SiN Composite Nanofibers with in Situ Embedded Graphite for Highly Efficient Electromagnetic Wave Absorption.

ACS Appl Mater Interfaces

Science and Technology on Thermostructural Composite Materials Laboratory and State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, 710072 Xi'an, China.

Published: August 2017

AI Article Synopsis

  • Researchers developed SiC/SiN composite nanofibers containing in situ embedded graphite through electrospinning, polymer pyrolysis, and annealing for improved electromagnetic (EM) wave absorption in the gigahertz range.
  • * The incorporation of graphite and SiN into the structure enhanced the overall EM wave absorption properties, with the effectiveness being influenced by processing conditions like annealing atmosphere and temperature.
  • * The ideal annealing conditions yielded impressive results, including a minimum reflection loss of -57.8 dB at 14.6 GHz and a wide effective absorption bandwidth, suggesting potential applications in reinforcing materials like polymers and ceramics to boost their EM absorption capabilities.

Article Abstract

SiC/SiN composite nanofibers with in situ embedded graphite, which show highly efficient electromagnetic (EM) wave absorption performance in gigahertz frequency, were prepared by electrospinning with subsequent polymer pyrolysis and annealing. By means of incorporating graphite and SiN into SiC, the EM wave absorption properties of the nanofibers were improved. The relationship among processing, fiber microstructure, and their superior EM wave absorption performance was systematically investigated. The EM wave absorption capability and effective absorption bandwidth (EAB) of nanofibers can be simply controlled by adjusting annealing atmosphere and temperature. The nanofibers after annealing at 1300 °C in Ar present a minimum reflection loss (RL) of -57.8 dB at 14.6 with 5.5 GHz EAB. The nanofibers annealed in N at 1300 °C exhibit a minimum RL value of -32.3 dB at a thickness of 2.5 mm, and the EAB reaches 6.4 GHz over the range of 11.3-17.7 GHz. The highly efficient EM wave absorption performance of nanofibers are closely related to dielectric loss, which originated from interfacial polarization and dipole polarization. The excellent absorbing performance together with wider EAB endows the composite nanofibers potential to be used as reinforcements in polymers and ceramics (SiC, SiN, SiO, AlO, etc.) to improve their EM wave absorption performance.

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Source
http://dx.doi.org/10.1021/acsami.7b05382DOI Listing

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