Electromagnetic wave absorption properties of carbon black/cement-based composites filled with porous glass pellets
Li, Bin, Ji, Zhijiang, Xie, Shuai, Wang, Jing, Zhou, Jianbo, Zhu, Liancheng
Published in Journal of materials science. Materials in electronics (01.07.2019)
Published in Journal of materials science. Materials in electronics (01.07.2019)
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Absorption properties of carbonyl-iron/carbon black double-layer microwave absorbers
Meng, Wang, Yuping, Duan, Shunhua, Liu, Xiaogang, Li, Zhijiang, Ji
Published in Journal of magnetism and magnetic materials (01.10.2009)
Published in Journal of magnetism and magnetic materials (01.10.2009)
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Recent progress in electromagnetic wave absorption building materials
Xie, Shuai, Ji, Zhijiang, Zhu, Liancheng, Zhang, Jinjun, Cao, Yanxin, Chen, Jihao, Liu, Ruirui, Wang, Jing
Published in Journal of Building Engineering (01.01.2020)
Published in Journal of Building Engineering (01.01.2020)
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Three-Dimensional Periodic Structured Absorber for Broadband Electromagnetic Radiation Absorption
Xie, Shuai, Zhu, Liancheng, Zhang, Yuan, Ji, Zhijiang, Wang, Jing
Published in Electronic materials letters (01.07.2020)
Published in Electronic materials letters (01.07.2020)
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The superior electromagnetic properties of carbonyl-iron/Fe91.2Si3.1P2.9Sb2.8 composites powder and impedance match mechanism
Zhonglun, Zhang, Zhijiang, Ji, Yuping, Duan, Shuchao, Gu, Jingbo, Guo
Published in Journal of materials science. Materials in electronics (01.03.2013)
Published in Journal of materials science. Materials in electronics (01.03.2013)
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The microwave electromagnetic characteristics of manganese dioxide with different crystallographic structures
Yuping, Duan, He, Ma, Xiaogang, Li, Shunhua, Liu, Zhijiang, Ji
Published in Physica. B, Condensed matter (01.04.2010)
Published in Physica. B, Condensed matter (01.04.2010)
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Research and simulation of electromagnetic wave absorbing performance for lightweight cement-based materials containing expanded polystyrene with different particle sizes and carbon black
Ma, Chao, Xie, Shuai, Wu, Zihao, Ji, Zhijiang, Wang, Jing
Published in Construction & building materials (07.06.2024)
Published in Construction & building materials (07.06.2024)
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Honeycomb-like micro-mesoporous structure TiO2/sepiolite composite for combined chemisorption and photocatalytic elimination of formaldehyde
Liu, Ruirui, Wang, Jing, Zhang, Jinjun, Xie, Shuai, Wang, Xiaoyan, Ji, Zhijiang
Published in Microporous and mesoporous materials (01.08.2017)
Published in Microporous and mesoporous materials (01.08.2017)
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Synthesis of octahedral-like ZnO/ZnFe2O4 heterojunction photocatalysts with superior photocatalytic activity
Kuang, Meng, Zhang, Jinjun, Wang, Wenjun, Chen, Jihao, Liu, Ruirui, Xie, Shuai, Wang, Jing, Ji, Zhijiang
Published in Solid state sciences (01.10.2019)
Published in Solid state sciences (01.10.2019)
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In situ anchoring of Fe3O4/CNTs hybrids on basalt fiber for efficient electromagnetic wave absorption
Si, Tiantian, Xie, Shuai, Ji, Zhijiang, Wu, Zihao, Ma, Chao, Wu, Junyu, Wang, Jing
Published in Nanotechnology (01.10.2023)
Published in Nanotechnology (01.10.2023)
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Research and simulation of three-layered lightweight cement-based electromagnetic wave absorbing composite containing expanded polystyrene and carbon black
Ma, Chao, Xie, Shuai, Wu, Zihao, Si, Tiantian, Wu, Junyu, Ji, Zhijiang, Wang, Jing
Published in Construction & building materials (22.08.2023)
Published in Construction & building materials (22.08.2023)
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Novel lightweight cement-based materials foaming by secondary aluminum ash: microwave absorption, mechanical and thermal insulation properties
Wu, Zihao, Xie, Shuai, Ji, Zhijiang, Ma, Chao, Si, Tiantian, Wu, Junyu, Wang, Jing
Published in Construction & building materials (26.01.2024)
Published in Construction & building materials (26.01.2024)
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Journal Article
In situ anchoring of Fe 3 O 4 /CNTs hybrids on basalt fiber for efficient electromagnetic wave absorption
Si, Tiantian, Xie, Shuai, Ji, Zhijiang, Wu, Zihao, Ma, Chao, Wu, Junyu, Wang, Jing
Published in Nanotechnology (01.10.2023)
Published in Nanotechnology (01.10.2023)
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