...
首页> 外文期刊>Nanoscale >Creep- and fatigue-resistant, rapid piezoresistive responses of elastomeric graphene-coated carbon nanotube aerogels over a wide pressure range
【24h】

Creep- and fatigue-resistant, rapid piezoresistive responses of elastomeric graphene-coated carbon nanotube aerogels over a wide pressure range

机译:蠕变和含量,快速的压敏电阻弹性graphene-coated碳的反应纳米气凝胶的压力范围宽

获取原文
获取原文并翻译 | 示例

摘要

Lightweight, flexible piezoresistive materials with wide operational pressure ranges are in demand for applications such as human physical activity and health monitoring, robotics, and for functional interfacing between living systems and wearable electronics. Piezoresistivity of many elastomeric foams of polymers and carbon allotropes satisfies much of the required characteristics for these applications except creep and fatigue resistance due to their viscoelasticity, critically limiting the reliability and lifetime of integrated devices. We report the piezoresistive responses from aerogels of graphene-coated single-walled carbon nanotubes (SWCNTs), made using a facile and versatile sol-gel method. Graphene crosslinks the junctions of the underlying random network of SWCNTs, generating lightweight elastomeric aerogels with a mass density of approximate to 11 mg mL(-1) (volume fraction approximate to 7.7 x 10(-3)) and a Young's modulus of approximate to 0.4 MPa. The piezoresistivity of these aerogels spans wide compressive pressures up to at least 120 kPa with sensitivity that exhibit ultrafast temporal responses of < 27 ms and < 3% delay ratio over 104 compressive loading-unloading cycles at rates between 0.1-10 Hz. Most importantly, the piezoresistive responses do not show any creep at least for 1 hour and 80 kPa of compressive static loading. We suggest that the fatigue-and creep-resistant, ultrafast piezoresistive responses of these elastomeric aerogels are highly attractive for use in dynamic and static lightweight, pressure sensing applications such as human activity monitoring and soft robotics.
机译:轻量级的,灵活的压敏电阻材料与操作压力范围宽人类身体等应用的需求活动和健康监测、机器人和功能之间的连接系统和生活可穿戴电子产品。弹性的泡沫聚合物和碳同素异形体满足大部分需要为这些应用程序除了特征由于他们的蠕变和抗疲劳性粘弹性,严重限制了集成设备的可靠性和寿命。我们报告的压敏电阻的响应graphene-coated单壁碳气凝胶纳米管(SWCNTs),使用温和的和多才多艺的溶胶-凝胶方法。随机的网络连接的基础SWCNTs,产生轻量级的弹性气凝胶的质量密度近似到11个mg毫升(1)(体积分数近似为7.7 x10(3))和近似的杨氏模量0.4 MPa。至少跨越宽压压力120 kPa展览超速的敏感性< 27个女士和< 3%的时间响应延迟比例超过104压缩装卸周期利率0.1 -10赫兹之间。重要的是,不要压敏电阻响应显示任何蠕变至少1小时和80 kPa压缩静态加载。疲劳和抗蠕变、超快的压敏电阻响应的弹性气凝胶是极具吸引力的用于动态和静态轻量级、压力传感人类活动监测等应用程序和软机器人。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号