TY - JOUR
T1 - The composition design of MOF-derived Co-Fe bimetallic autocatalysis carbon nanotubes with controllable electromagnetic properties
AU - Yan, Jing
AU - Huang, Ying
AU - Yan, Yonghui
AU - Zhao, Xiaoxiao
AU - Liu, Panbo
N1 - Publisher Copyright:
© 2020 Elsevier Ltd
PY - 2020/12
Y1 - 2020/12
N2 - MOF-derived magnetic carbon nanotubes microwave absorbers have been prepared by some researchers, but how to control the length and quantity of MOF-derived carbon nanotubes is still a big challenge. In this work, the number and length of carbon nanotubes were regulated by introducing Fe atoms into the bimetallic Zn-Co MOFs and optimizing the composition proportion of Zn2+ and Co2+ in the precursor. When the molar ratio of Zn2+ and Co2+ was 1:1, the carbon nanotubes was most; When changed to 6:1, the obtained absorbers possess not only strong absorption capability but also wide absorption bandwidth only under 15 wt% filling loading. The excellent performance ascribed to the strong interfacial polarization and impedance matching. The dielectric loss mainly resulted from the conductive network formed by a suitable number of long carbon tubes. We believe that this research will provide a necessary reference for future MOFs-derived magnetic carbon nanotubes microwave absorbers.
AB - MOF-derived magnetic carbon nanotubes microwave absorbers have been prepared by some researchers, but how to control the length and quantity of MOF-derived carbon nanotubes is still a big challenge. In this work, the number and length of carbon nanotubes were regulated by introducing Fe atoms into the bimetallic Zn-Co MOFs and optimizing the composition proportion of Zn2+ and Co2+ in the precursor. When the molar ratio of Zn2+ and Co2+ was 1:1, the carbon nanotubes was most; When changed to 6:1, the obtained absorbers possess not only strong absorption capability but also wide absorption bandwidth only under 15 wt% filling loading. The excellent performance ascribed to the strong interfacial polarization and impedance matching. The dielectric loss mainly resulted from the conductive network formed by a suitable number of long carbon tubes. We believe that this research will provide a necessary reference for future MOFs-derived magnetic carbon nanotubes microwave absorbers.
KW - Composition design
KW - Interfacial polarization
KW - Microwave absorption performance
KW - MOF-derived carbon nanotubes
UR - http://www.scopus.com/inward/record.url?scp=85090298567&partnerID=8YFLogxK
U2 - 10.1016/j.compositesa.2020.106107
DO - 10.1016/j.compositesa.2020.106107
M3 - 文章
AN - SCOPUS:85090298567
SN - 1359-835X
VL - 139
JO - Composites Part A: Applied Science and Manufacturing
JF - Composites Part A: Applied Science and Manufacturing
M1 - 106107
ER -