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基于导电水凝胶的可拉伸表面肌电阵列电极贴的研究
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作者 张华青 王甫帅 +4 位作者 蔡一鸣 刘振中 徐鑫 徐侃 刘军 《传感技术学报》 北大核心 2025年第7期1155-1161,共7页
导电水凝胶由于其固有的导电性、柔软性、延展性和生物相容性等优点,在可穿戴柔性传感器设计中有良好的应用价值。为了实现可穿戴条件下高质量采集表面肌电信号的目的,采用电化学凝胶法制备MXene水凝胶导线和采用纳米粘土复合导电水凝... 导电水凝胶由于其固有的导电性、柔软性、延展性和生物相容性等优点,在可穿戴柔性传感器设计中有良好的应用价值。为了实现可穿戴条件下高质量采集表面肌电信号的目的,采用电化学凝胶法制备MXene水凝胶导线和采用纳米粘土复合导电水凝胶作为肌电信号传感单元,设计了一种新型的水凝胶基可拉伸表面肌电阵列电极贴。实验结果表明相比于含铜银浆导线,MXene水凝胶导线在断路测试中最大拉伸应变提高了3倍。此外,由于肌电阵列电极贴的纳米粘土复合导电水凝胶具有与人体皮肤紧密贴合能力,可实现手臂部位在不同状态下的表面肌电信号采集,实验结果表明8个通道阵列电极均具有高灵敏度和稳定性。可拉伸阵列电极贴设计和表面肌电信号采集系统的构筑提供了新思路。 展开更多
关键词 导电水 电化学凝胶法 MXene 可拉伸阵列电极贴 肌电信号
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Electrochemical performance of LiFePO_4/(C+Fe_2P) composite cathode material synthesized by sol-gel method 被引量:2
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作者 陈权启 李小栓 王建明 《Journal of Central South University》 SCIE EI CAS 2011年第4期978-984,共7页
A LiFePO4/(C+Fe2P) composite cathode material was prepared by a sol-gel method using Fe(NO3)3.9H20, LiAc·H2O), NHaH2PO4 and citric acid as raw materials, and the physical properties and electrochemical perf... A LiFePO4/(C+Fe2P) composite cathode material was prepared by a sol-gel method using Fe(NO3)3.9H20, LiAc·H2O), NHaH2PO4 and citric acid as raw materials, and the physical properties and electrochemical performance of the composite cathode material were investigated by X-ray diffractometry (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and electrochemical tests. The Fe2P content, morphology and electrochemical performance of LiFePOa/(C+Fe2P) composite depend on the calcination temperature. The optimized LiFePO4/(C+FeeP) composite is prepared at 650 ~C and the optimized composite exhibits sphere-like morphology with porous structure and Fe2P content of about 3.2% (mass fraction). The discharge capacity of the optimized LiFePO4/(C+FeRP) at 0.1C is 156 and 161 mA.h/g at 25 and 55 ℃, respectively, and the corresponding capacity retentions are 96% after 30 cycles; while the capacity at 1C is 142 and 149 mA.h/g at 25 and 55 ℃, respectively, and the capacity still remains 135 and 142 mA-h/g after 30 cycles at 25 and 55℃, respectively. 展开更多
关键词 LiFePO4/(C+Fe2P) composite sol-gel sphere-like morphology electrochemical performance
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