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首页> 外文期刊>Journal of Applied Polymer Science >Soft mixed ionic-electronic conductive electrodes for noninvasive stimulation
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Soft mixed ionic-electronic conductive electrodes for noninvasive stimulation

机译:用于非侵入性刺激的软混合离子电子导电电极

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A new material, classified as a soft mixed ionic-electronic conductor (MIEC), was fabricated through casting and curing of different ratios of single walled carbon nanotube (SWNTs), hyaluronic acid (HA), and acrylonitrile butadiene copolymer latex (NBR) and developed for noninvasive stimulation for electrotherapeutics. The morphology of the composite yielded high electrical conductivity and retention of elasticity. The interfacial charge transfer of the material showed that by increasing the HA loading the capacitive contribution decreased, while increasing SWNT loading decreased the interfacial resistance. The soft MIEC materials interfacial charge transfer was superior than current state-of-the art electrodes on the market. A layered configuration with high HA ratio at the skin interface and high SWNTs ratio at the stainless-steel interface was created to induce the most optimal charge transfer. These soft MIEC electrodes will be extremely helpful in electrotherapeutic applications to eliminate the need for hydrogels, which can be unsuitable due the their lack long term durability and instability.
机译:通过单壁碳纳米管(SWNT),透明质酸(HA)和丙烯腈丁二烯共聚物乳胶(NBR)和丙烯腈丁二烯共聚物胶乳(NBR)的不同比例,通过铸造和固化来制造被分类为软混合离子电子导体(MIEC)的新材料。为无侵蚀性刺激进行了用于电疗。复合材料的形态产生高导电性和保留弹性。材料的界面电荷转移表明,通过增加HA加载电容贡献降低,同时增加SWNT负荷降低界面抗性。软体麦米界面界面电荷转移优于市场上的电流最先进的电极。创建具有高HA比的分层配置,并在不锈钢接口处的高SWNT比率,以诱导最佳的电荷转移。这些柔软的MIEC电极对电疗应用非常有用,以消除对水凝胶的需求,这可能是由于它们缺乏长期耐久性和不稳定性而不合适。

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