TY - JOUR
T1 - An electromagnetic wave absorbing material with potential application prospects—WS2 nanosheets
AU - Zhang, Deqing
AU - Liu, Tingting
AU - Liang, Shuang
AU - Chai, Jixing
AU - Yang, Xiuying
AU - Cheng, Junye
AU - Wang, Hao
AU - Cao, Maosheng
N1 - Publisher Copyright:
© 2019, © 2019 Taylor & Francis Group, LLC.
PY - 2019/7/24
Y1 - 2019/7/24
N2 - In this study, we report two-dimensional WS2 nanosheets successfully synthesized by simple hydrothermal method. The obtained WS2 nanosheets are very promising as electromagnetic wave absorbers. The phase composition, microstructure, electromagnetic properties and microwave absorption properties of the prepared WS2 nanosheets were characterized by XRD, SEM, TEM, XPS and vector network analyzers. Our results show that the real and imaginary parts of permittivity of WS2 prepared at 210 °C are higher than those of other samples, with maximum interfacial polarization and dielectric loss, a wide effective absorption band with a thinner thickness is obtained in the frequency range of 5.5–18 GHz. The effective absorption bandwidth can reach 12.5 GHz, the highest reflection loss of the sample wax containing 40% WS2 is –15.6 dB at a thickness of 5.5 mm, and the absolute value of RL is greater than 10 dB in the range of 2.0–5.5 mm. The results show that the prepared WS2 nanosheets have the advantages of wide bandwidth, strong absorption and light weight, and have potential application prospects in the application and development of microwave absorbing materials in the future.
AB - In this study, we report two-dimensional WS2 nanosheets successfully synthesized by simple hydrothermal method. The obtained WS2 nanosheets are very promising as electromagnetic wave absorbers. The phase composition, microstructure, electromagnetic properties and microwave absorption properties of the prepared WS2 nanosheets were characterized by XRD, SEM, TEM, XPS and vector network analyzers. Our results show that the real and imaginary parts of permittivity of WS2 prepared at 210 °C are higher than those of other samples, with maximum interfacial polarization and dielectric loss, a wide effective absorption band with a thinner thickness is obtained in the frequency range of 5.5–18 GHz. The effective absorption bandwidth can reach 12.5 GHz, the highest reflection loss of the sample wax containing 40% WS2 is –15.6 dB at a thickness of 5.5 mm, and the absolute value of RL is greater than 10 dB in the range of 2.0–5.5 mm. The results show that the prepared WS2 nanosheets have the advantages of wide bandwidth, strong absorption and light weight, and have potential application prospects in the application and development of microwave absorbing materials in the future.
KW - WS2 nanosheets
KW - dielectric loss
KW - microwave absorption materials
UR - http://www.scopus.com/inward/record.url?scp=85071976157&partnerID=8YFLogxK
U2 - 10.1080/10584587.2019.1592627
DO - 10.1080/10584587.2019.1592627
M3 - Article
AN - SCOPUS:85071976157
SN - 1058-4587
VL - 200
SP - 108
EP - 116
JO - Integrated Ferroelectrics
JF - Integrated Ferroelectrics
IS - 1
ER -