4.7 Article

Structure-dependent electromagnetic wave absorbing properties of bowl-like and honeycomb TiO2/CNT composites

期刊

JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY
卷 109, 期 -, 页码 105-113

出版社

JOURNAL MATER SCI TECHNOL
DOI: 10.1016/j.jmst.2021.07.060

关键词

Bowl-like structure; Honeycomb structure; TiO2/CNT composite; Electromagnetic wave absorption

资金

  1. National Natural Science Foundation of China [51802289]
  2. Science Foun-dation for the Excellent Youth Scholars of Henan Province [21230 0410 089]
  3. Support Program for Scientific and Techno-logical Innovation Talents of Higher Education in Henan Province [21HASTIT004]
  4. China Postdoctoral Science Foundation [2019M661352]
  5. Natural Science Basic Research Program in Shaanxi Province [20203210 0 067]

向作者/读者索取更多资源

This study fabricated bowl-like and honeycomb titanium dioxide/carbon nanotube (TiO2/CNT) composites and found that the bowl-like structure had advantages in dielectric polarization and multiple reflections, while the honeycomb structure had better impedance matching characteristics. The bowl-like composite exhibited a wide effective absorption band at 4.2 GHz and is suitable for lightweight and highly efficient electromagnetic wave absorbing materials.
Materials that can efficiently absorb electromagnetic waves (EMWs) are required to deal with electromagnetic pollution. Structure design appears to be an efficient way to improve the EMW-absorption performance of such materials, particularly when adjustment of the constitution or mixing ratio is limited. In this study, bowl-like and honeycomb titanium dioxide/carbon nanotube (TiO2/CNT) composites with different CNT contents were fabricated using the methods of hierarchical and mixing vacuum-assisted filtration, respectively. Compared to the honeycomb structure, the bowl-like structure simultaneously facilitated greater interfacial polarization and conduction loss in favor of dielectric polarization, and augmented multiple reflections. The high porosity of the honeycomb structure was conducive to optimizing the impedance matching characteristics. The bowl-like TiO2/CNT composite exhibited a minimum reflection loss (RL(min) )of -38.6 dB (1.5 mm) with a wide effective absorption band (EAB; <-10 dB) of 4.2 GHz, while the honeycomb TiO2/CNT composite showed an RLmin of -34.8 dB (2.1 mm) with an EAB of 4.3 GHz. The required mixing ratio in the matrix was only 15 wt%, outperforming that of the most closely related composites. Thus, both the bowl-like and honeycomb TiO2/CNT composites are ideal candidates for light-weight and highly efficient EMW-absorbing materials. (C) 2021 Published by Elsevier Ltd on behalf of Chinese Society for Metals.

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