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A feasible way for the fabrication of single walled carbon nanotube/polypyrrole composite film with controlled pore size for neural interface

机译:一种可控制神经界面孔径的单壁碳纳米管/聚吡咯复合膜的可行方法

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Single walled carbon nanotube (SWNT)/polypyrrole (PPy) composite films with controlled pore size and strong adhesive force was prepared as electrode material for improving the performance of neural electrodes. SWNT film with controlled pore size was first fabricated through electrophoresis with a merit that the pore size can be well tuned by changing the concentration of metal ions in the electrolyte. An ultrathin conformal PPy layer around SWNT bundles in a uniform manner within the entire films was subsequently obtained by pulsed electropolymerization. The adhesion of the SWNT coated electrodes was tested by repeatedly inserting the coated electrode into agar gel to demonstrate the better adhesive force of the coating. Electrochemical results showed that the SWNT/PPy coated metal electrodes have much lower impedance and higher charge storage capacity than the bare metal substrates. Further in vitro culture of rat pheochromocytoma (PC12) cells revealed that the porous SWNT/PPy composite film was non-toxic and well supported the growth of neurons. We demonstrate that the prepared composite film has potential applications in chronic implantable neural electrodes for neural stimulation and recording. (C) 2014 Elsevier B.V. All rights reserved.
机译:制备了孔径可控,附着力强的单壁碳纳米管(SWNT)/聚吡咯(PPy)复合薄膜作为电极材料,用于改善神经电极的性能。首先通过电泳制备孔径可控的SWNT膜,其优点是可以通过改变电解质中金属离子的浓度来很好地调节孔径。随后通过脉冲电聚合获得在整个薄膜内均匀分布在SWNT束周围的超薄保形PPy层。通过将经涂覆的电极重复插入琼脂凝胶中,测试SWNT涂覆电极的粘附力,以证明涂层具有更好的粘附力。电化学结果表明,与裸金属基板相比,SWNT / PPy涂层金属电极具有低得多的阻抗和更高的电荷存储能力。大鼠嗜铬细胞瘤(PC12)细胞的进一步体外培养表明,多孔的SWNT / PPy复合膜是无毒的,并很好地支持了神经元的生长。我们证明了制备的复合膜在慢性植入神经电极中对神经刺激和记录具有潜在的应用。 (C)2014 Elsevier B.V.保留所有权利。

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