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Robust,Flexible,and Superhydrophobic Fabrics for High-Efficiency and Ultrawide-Band Microwave Absorption
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作者 Zhong Zhang Yaxin Meng +4 位作者 Xinrui Fang Qing Wang Xungai Wang Haitao Niu Hua Zhou 《Engineering》 SCIE EI CAS CSCD 2024年第10期161-171,共11页
Microwave absorption(MA)materials are essential for protecting against harmful electromagnetic radiation.In this study,highly efficient and ultrawide-band microwave-absorbing fabrics with superhydrophobic surface feat... Microwave absorption(MA)materials are essential for protecting against harmful electromagnetic radiation.In this study,highly efficient and ultrawide-band microwave-absorbing fabrics with superhydrophobic surface features were developed using a facile dip-coating method involving in situ graphene oxide(GO)reduction,deposition of TiO_(2)nanoparticles,and subsequent coating of a mixture of polydimethylsiloxane(PDMS)and octadecylamine(ODA)on polyester fabrics.Owing to the presence of hierarchically structured surfaces and low-surface-energy materials,the resultant reduced GO(rGO)/TiO_(2)-ODA/PDMS-coated fabrics demonstrate superhydrophobicity with a water contact angle of 159°and sliding angle of 5°.Under the synergistic effects of conduction loss,interface polarization loss,and surface roughness topography,the optimized fabrics show excellent microwave absorbing performances with a minimum reflection loss(RL_(min))of47.4 dB and a maximum effective absorption bandwidth(EAB_(max))of 7.7 GHz at a small rGO loading of 6.9 wt%.In addition,the rGO/TiO_(2)-ODA/PDMS coating was robust,and the coated fabrics could withstand repeated washing,soiling,long-term ultraviolet irradiation,and chemical attacks without losing their superhydrophobicity and MA properties.Moreover,the coating imparts self-healing properties to the fabrics.This study provides a promising and effective route for the development of robust and flexible materials with microwave-absorbing properties. 展开更多
关键词 Microwave absorption SUPERHYDROPHOBIC FABRICS COATING SELF-HEALING
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MXene/Fe_(3)O_(4)改性织物的制备及吸波性能研究 被引量:1
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作者 孟雅鑫 张仲 +2 位作者 侯宪广 王甜 张宪胜 《棉纺织技术》 CAS 北大核心 2023年第5期19-24,共6页
为了改善现有吸波材料柔性差的问题,采用层层喷涂的方法在等离子体处理过的棉织物上负载MXene/Fe_(3)O_(4)分散液,制备了纺织基吸波织物。对不同Fe_(3)O_(4)负载量下改性织物的形貌结构进行表征,并测试分析其吸波性能。结果表明:MXene... 为了改善现有吸波材料柔性差的问题,采用层层喷涂的方法在等离子体处理过的棉织物上负载MXene/Fe_(3)O_(4)分散液,制备了纺织基吸波织物。对不同Fe_(3)O_(4)负载量下改性织物的形貌结构进行表征,并测试分析其吸波性能。结果表明:MXene负载量2 mg/cm^(2),Fe_(3)O_(4)负载量48 mg/cm^(2)时制备得到的MXene/Fe_(3)O_(4)复合吸波织物,在织物厚度1.5 mm,电磁频率10.3 GHz时最小反射损耗达到-27 dB,其有效吸收带宽几乎覆盖整个X波段。认为:MXene/Fe_(3)O_(4)改性织物具有良好吸波性能,在柔性可穿戴吸波材料领域具有广泛的应用前景。 展开更多
关键词 MXene 负载量 吸波织物 电磁参数 吸波性能 反射损耗
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