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纳米磁性材料的特性、制备、应用及其发展趋势 被引量:2
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作者 易学华 卜寿亮 +2 位作者 温建平 杨伟志 曾辉 《中国粉体工业》 2012年第3期13-15,共3页
本文阐述了纳米磁性材料的概念和特性,介绍了纳米磁流体、纳米磁性微粒,纳米磁性微晶以及纳米磁性复合材料的制备方法。同时简要概述了纳米磁性材料的一些应用现状,并对其发展趋势进行了展望。
关键词 纳米技术 磁性材料 特性与制备方法 应用与发展趋势
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Advanced carbon materials for flexible and wearable sensors 被引量:12
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作者 蹇木强 王春雅 +6 位作者 王琪 王惠民 夏凯伦 訚哲 张明超 梁晓平 张莹莹 《Science China Materials》 SCIE EI CSCD 2017年第11期1026-1062,共37页
Flexible and wearable sensors have drawn ex-tensive concern due to their wide potential applications inwearable electronics and intelligent robots. Flexible sensorswith high sensRivity, good flexibility, and excellent... Flexible and wearable sensors have drawn ex-tensive concern due to their wide potential applications inwearable electronics and intelligent robots. Flexible sensorswith high sensRivity, good flexibility, and excellent stabilityare highly desirable for monitoring human biomedical signals,movements and the environment. The active materials and thedevice structures are the keys to achieve high performance.Carbon nanomaterials, including carbon nanotubes (CNTs),graphene, carbon black and carbon nanofibers, are one of themost commonly used active materials for the fabrication ofhigh-performance flexible sensors due to their superiorproperties. Especially, CNTs and graphene can be assembledinto various multi-scaled macroscopic structures, includingone dimensional fibers, two dimensional films and three di-mensional architectures, endowing the facile design of flexiblesensors for wide practical applications. In addition, the hybridstructured carbon materials derived from natural bio-mate-rials also showed a bright prospect for applications in flexiblesensors. This review provides a comprehensive presentation offlexible and wearable sensors based on the above variouscarbon materials. Following a brief introduction of flexiblesensors and carbon materials, the fundamentals of typicalflexible sensors, such as strain sensors, pressure sensors,temperature sensors and humidity sensors, are presented.Then, the latest progress of flexible sensors based on carbonmaterials, including the fabrication processes, performanceand applications, are summarized. Finally, the remainingmajor challenges of carbon-based flexible electronics are dis-cussed and the future research directions are proposed. 展开更多
关键词 carbon materials flexible sensors wearable electro-nics carbon nanotubes GRAPHENE
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