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3D Printed Integrated Gradient-Conductive MXene/CNT/Polyimide Aerogel Frames for Electromagnetic Interference Shielding with Ultra-Low Reflection 被引量:25
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作者 Tiantian Xue Yi Yang +5 位作者 Dingyi Yu Qamar Wali Zhenyu Wang Xuesong Cao Wei Fan Tianxi Liu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第3期332-345,共14页
Construction of advanced electromagnetic interference(EMI)shielding materials with miniaturized,programmable structure and low reflection are promising but challenging.Herein,an integrated transition-metal carbides/ca... Construction of advanced electromagnetic interference(EMI)shielding materials with miniaturized,programmable structure and low reflection are promising but challenging.Herein,an integrated transition-metal carbides/carbon nanotube/polyimide(gradient-conductive MXene/CNT/PI,GCMCP)aerogel frame with hierarchical porous structure and gradient-conductivity has been constructed to achieve EMI shielding with ultra-low reflection.The gradient-conductive structures are obtained by continuous 3D printing of MXene/CNT/poly(amic acid)inks with different CNT contents,where the slightly conductive top layer serves as EM absorption layer and the highly conductive bottom layer as reflection layer.In addition,the hierarchical porous structure could extend the EM dissipation path and dissipate EM by multiple reflections.Consequently,the GCMCP aerogel frames exhibit an excellent average EMI shielding efficiency(68.2 dB)and low reflection(R=0.23).Furthermore,the GCMCP aerogel frames with miniaturized and programmable structures can be used as EMI shielding gaskets and effectively block wireless power transmission,which shows a prosperous application prospect in defense industry and aerospace. 展开更多
关键词 3D printing MXene/CNT/Polyimide aerogel gradient-conductive Electromagnetic interference shielding
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高电磁干扰屏蔽和低反射的柔性Ag/BaFe_(12)O_(19)微纤维/聚酰亚胺复合薄膜
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作者 邹康康 李南 +4 位作者 潘兴海 石军峰 蒲俊宏 鄢定祥 王浩伦 《Science China Materials》 SCIE EI CAS CSCD 2023年第12期4825-4833,共9页
高屏蔽效率和低反射特性的先进电磁干扰屏蔽(EMI SE)材料在降低二次电磁辐射污染方面具有巨大的潜力.本研究采用气流纺丝法制备了具有优异EMI SE的梯度导电Ag/BaFe_(12)O_(19)超细纤维/聚酰亚胺(GCABP)复合薄膜.梯度导电结构有效地减少... 高屏蔽效率和低反射特性的先进电磁干扰屏蔽(EMI SE)材料在降低二次电磁辐射污染方面具有巨大的潜力.本研究采用气流纺丝法制备了具有优异EMI SE的梯度导电Ag/BaFe_(12)O_(19)超细纤维/聚酰亚胺(GCABP)复合薄膜.梯度导电结构有效地减少了电磁波的反射.BaFe_(12)O_(19)微纤维的掺入进一步提高了薄膜的EMI SE.在厚度为100μm时,复合膜的EMI SE可达98.9 dB,吸收系数(A)为0.75,证实了GCABP膜是一种吸波型EMI屏蔽材料.聚酰亚胺(PI)保护Ag超细纤维和BaFe12O19超细纤维,确保GCABP薄膜在极端环境下的稳定性.此外,GCABP薄膜表现出优异的热管理性能,如其在1.4 V的低电压下表面温度高达315℃,响应时间达到5.4 s,循环加热能力稳定,整体可靠性好.鉴于其出色的综合性能,GCABP薄膜在国防工业和航空航天等领域具有巨大的应用潜力. 展开更多
关键词 flexible microfiber film gradient-conductive high EMI shielding low reflection
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