首页|期刊导航|Nano-Micro Letters|Enhancing Defect-Induced Dipole Polarization Strategy of SiC@MoO_(3)Nanocomposite Towards Electromagnetic Wave Absorption
Enhancing Defect-Induced Dipole Polarization Strategy of SiC@MoO_(3)Nanocomposite Towards Electromagnetic Wave Absorption
Ting Wang Wenxin Zhao Yukun Miao Anguo Cui Chuanhui Gao Chang Wang Liying Yuan Zhongning Tian Alan Meng Zhenjiang Li Meng Zhang
Nano-Micro Letters2024,Vol.16Issue(12):P.406-426,21.
Nano-Micro Letters2024,Vol.16Issue(12):P.406-426,21.DOI:10.1007/s40820-024-01478-2
Enhancing Defect-Induced Dipole Polarization Strategy of SiC@MoO_(3)Nanocomposite Towards Electromagnetic Wave Absorption
摘要
关键词
Defect engineering/Oxygen vacancies/SiC@MoO_(3)nanocomposite/Electromagnetic wave absorption/Induced dipole polarization引用本文复制引用
Ting Wang,Wenxin Zhao,Yukun Miao,Anguo Cui,Chuanhui Gao,Chang Wang,Liying Yuan,Zhongning Tian,Alan Meng,Zhenjiang Li,Meng Zhang..Enhancing Defect-Induced Dipole Polarization Strategy of SiC@MoO_(3)Nanocomposite Towards Electromagnetic Wave Absorption[J].Nano-Micro Letters,2024,16(12):P.406-426,21.基金项目
supported by the National Natural Science Foundation of China under Grant Nos.52072196,52002200,52102106,52202262,22379081,22379080,Major Basic Research Program of Natural Science Foundation of Shandong Province under Grant No.ZR2020ZD09,the Natural Science Foundation of Shandong Province under Grant Nos.ZR2020QE063,ZR2022ME090,ZR2023QE059 ()
supported by the Visiting Scholar Fellowship Funding for Teachers in Shandong Province’s General Undergraduate Institutions. ()