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Carbon nanotube/cellulose papers with high performance in electric heating and electromagnetic interference shielding

机译:在电加热和电磁干扰屏蔽方面具有高性能的碳纳米管/纤维素纸

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A series of multi-walled carbon nanotube (MWCNT)-coated cellulose papers were manufactured by a facile dip-coating process, and their performance in electric heating and electromagnetic interference (EMI) shielding materials was investigated by considering the microstructure, thermal stability, and electrical property. With increasing the cycle of the dip-coating process, the apparent thickness of MWCNT/cellulose papers increased on a monotonic basis. It was observed that MWCNTs are coated dominantly on cellulose fibers on the paper surfaces, in addition to their partial coating on the inside of cellulose papers, which is supported by the anisotropic electrical conductivity of the papers in the in plane or thickness direction. For MWCNT/cellulose paper obtained by single dip-coating cycle, high apparent electrical conductivity in the in-plane direction of 0.02 S/cm was achieved. The electrical conductivity in the in-plane direction increased significantly from 0.02 S/cm to 1.11 S/cm with increasing the dip-coating cycle from 1 to 30. Accordingly, MWCNT/cellulose papers with >1 dip-coating cycle exhibited excellent electric heating performance in terms of temperature responsiveness, steady-state maximum temperature, and electrical energy efficiency at constant applied voltages. In addition, high EMI shielding effectiveness of -20.3 dB (-99.1% attenuation) was achieved at 1 GHz by MWCNT/cellulose paper with -1.11 S/cm and -170 mu m only. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过简便的浸涂工艺制备了一系列多壁碳纳米管(MWCNT)涂布的纤维素纸,并考虑了其微观结构,热稳定性和热稳定性,研究了它们在电加热和电磁干扰(EMI)屏蔽材料中的性能。电性能。随着浸涂工艺周期的增加,MWCNT /纤维素纸的表观厚度在单调的基础上增加。观察到,MWCNT除了在纤维素纸内侧上的部分涂覆以外,主要还涂覆在纸表面的纤维素纤维上,这由纸在平面或厚度方向上的各向异性导电性支撑。对于通过单次浸涂循环获得的MWCNT /纤维素纸,在面内方向上具有0.02S / cm的高表观电导率。随着浸涂循环从1增加到30,面内方向的电导率从0.02 S / cm显着增加到1.11 S / cm。因此,浸涂循环> 1的MWCNT /纤维素纸表现出出色的电加热在恒定的施加电压下的温度响应性,稳态最高温度和电能效率方面的性能。此外,MWCNT /纤维素纸在-1 GHz时仅具有-1.11 S / cm和-170μm的高EMI屏蔽效果为-20.3 dB(衰减为9.1.1%)。 (C)2016 Elsevier Ltd.保留所有权利。

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