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电纺碳纳米纤维/石墨烯气凝胶薄膜的可控制备与电磁屏蔽性能研究 被引量:2
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作者 付宁宁 谢绍兴 +2 位作者 周禄军 丁亚萍 孟凡彬 《材料导报》 CSCD 北大核心 2023年第24期31-35,共5页
随着信息技术的迅猛发展,高功率电子设备包括卫星通信、宽带雷达、无线网络和便携式数字硬件等在医疗卫生、电子安全和国防安全领域广泛应用,电磁干扰、辐射污染以及信息泄露等问题则随之产生。目前,如何制备具有优异力学性能、电导率... 随着信息技术的迅猛发展,高功率电子设备包括卫星通信、宽带雷达、无线网络和便携式数字硬件等在医疗卫生、电子安全和国防安全领域广泛应用,电磁干扰、辐射污染以及信息泄露等问题则随之产生。目前,如何制备具有优异力学性能、电导率和电磁屏蔽性能的石墨烯基薄膜材料仍然是一个巨大的挑战。因此,本工作以氧化石墨烯(Graphene oxide, GO)水溶液和电纺碱处理聚丙烯腈(Alkali-treated polyacrylonitrile, aPAN)纳米纤维为原料,通过水热还原和冷冻干燥得到气凝胶,进一步通过预氧化和高温退火处理获得碳纳米纤维增强的石墨烯气凝胶(GCA),并通过液压机压制得到石墨烯基气凝胶薄膜,系统研究了薄膜的电导率、电磁屏蔽和光热转化性能。结果表明,在加入碳纳米纤维后,GCA膜的电导率可以提升至20.5 S/cm。对于电磁屏蔽性能,可从73.7 dB(GA)增加到78.8 dB(GCA-10),且气凝胶膜的整体屏蔽效果可以达到99.999 995%以上。此外,该气凝胶膜还呈现出优异的光热转化性能,有望应用于光吸收和原油传输等领域。 展开更多
关键词 石墨烯 电纺碳纳米纤维 多孔结构 磁屏蔽 屏蔽机理
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Scalable production of self-supported WSe/CNFs by electrospinning as the anode for high-performance lithium-ion batteries 被引量:11
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作者 Shasha Zhou Junnian Chen +4 位作者 Lin Gan Qing Zhang Zhi Zheng Huiqiao Li Tianyou Zhai 《Science Bulletin》 SCIE EI CAS CSCD 2016年第3期227-235,共9页
WS2/carbon nanofibers (WS2/CNFs) are obtained by a simple electrospinning method in which few-/ single-layer WS2 is uniformly embedded in carbon fibers. When used as the active anode material for Li-ion cells, these... WS2/carbon nanofibers (WS2/CNFs) are obtained by a simple electrospinning method in which few-/ single-layer WS2 is uniformly embedded in carbon fibers. When used as the active anode material for Li-ion cells, these nanofibers exhibit a first-cycle discharge/charge capacity of 941/756 mAh/g at 100 mAJg and maintain a capacity of 458 mAh/g after 100 cycles at 1 A/g. The evolution of size and crystallinity of WS2 with heating treatment are system- atically studied, which are found to strongly influence the final electrochemical performance. Interestingly, the WS2 samples of lowest crystallinity show the highest performance among all studied samples, which could result from the large interfacial capacity for Li ions due to their large specific surface area. More interestingly, the inherent flexible attribute of electrospun nanofibers renders them a great potential in the utilization of binder-flee anodes. Similar high discharge/charge capacity of 761/604 mAh/g with a first coulombic efficiency of 79.4 % has been achieved in these binder-flee anodes. Considering the universal of such simple and scalable preparation strategy, it is very likely to extend this method to other similar two-dimensional layered materials besides WS2 and provides a promising candidate elec- trode for developing flexible battery devices. 展开更多
关键词 WS2/CNFs ELECTROSPINNING Li-ionbatteries ANODE Self-supported Crystallinity
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