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Polyaniline Films With Nanostructure Used As Neural Probe Coating Surfaces

机译:具有纳米结构的聚苯胺薄膜用作神经探针涂层表面

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Polyaniline (PANi) films with high conductivity and nanostructure were prepared by a modified dipping method using four acids on a polytetrafluoroethylene (PTFE) substrate. The "doping-dedoping-redoping" process was carried out to investigate whether the electrical and surface properties of PANi coating could be changed. We found that the conductivity decreased with prolonged immersing time in both water and DMEM, until the PANi films were almost non-conductive. The as-prepared PANi films were hydrophilic, and the immersing treatment with DMEM made them hydrophobic. Moreover, they recovered their hydrophilicity following the redoping treatment. The morphologies of the PANi films became heterogeneous after the immersing-redoping treatment. These results provide a good reference for the use of conducting polymers as a neural probe coating.
机译:通过改进的浸渍方法,在聚四氟乙烯(PTFE)基板上使用四种酸,制备了具有高电导率和纳米结构的聚苯胺(PANi)薄膜。进行了“掺杂-去掺杂-再掺杂”工艺以研究PANi涂层的电性能和表面性能是否可以改变。我们发现电导率随着在水和DMEM中浸泡时间的延长而降低,直到PANi膜几乎不导电为止。所制备的PANi薄膜是亲水性的,用DMEM浸渍处理使其具有疏水性。此外,它们在重做处理后恢复了亲水性。经过浸没-重掺杂处理后,PANi膜的形貌变得异质。这些结果为使用导电聚合物作为神经探针涂层提供了很好的参考。

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