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Electrochemical layer-by-layer approach to fabricate mechanically stable platinum black microelectrodes using a mussel-inspired polydopamine adhesive

机译:电化学逐层方法使用贻贝启发式聚多巴胺粘合剂制造机械稳定的铂黑微电极

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Objective. Platinum black (PtBK) has long been used for microelectrode fabrication owing to its high recording performance of neural signals. The porous structure of PtBK enlarges the surface area and lowers the impedance, which results in background noise reduction. However, the brittleness of PtBK has been a problem in practice. In this work, we report mechanically stable PtBK microelectrodes using a bioinspired adhesive film, polydopamine (pDA), while maintaining the low impedance of PtBK. Approach. The pDA layer was incorporated into the PtBK structure through electrochemical layer-by-layer deposition. Varying the number of layers and the order of materials, multi-layered pDA-PtBK hybrids were fabricated and the electrical properties, both impedance and charge injection limit, were evaluated. Main results. Multilayered pDA-PtBK hybrids had electrical impedances as low as PtBK controls and charge injection limit twice larger than controls. For the 30 min-ultrasonication agitation test, impedance levels rarely changed for some of the pDA-PtBK hybrids indicating that the pDA improved the mechanical property of the PtBK structures. The pDA-PtBK hybrid microelectrodes readily recorded neural signals of cultured hippocampal neurons, where background noise levels and signal-to-noise were 2.43 ~ 3.23 μV_(rms) and 28.4 ~ 69.1, respectively. Significance. The developed pDA-PtBK hybrid microelectrodes are expected to be applicable to neural sensors for neural prosthetic studies.
机译:目的。铂黑(PtBK)由于其对神经信号的高记录性能而长期用于微电极制造。 PtBK的多孔结构增加了表面积并降低了阻抗,从而降低了背景噪声。然而,PtBK的脆性在实践中一直是一个问题。在这项工作中,我们报告了使用受生物启发的粘合膜聚多巴胺(pDA)形成的机械稳定的PtBK微电极,同时保持了PtBK的低阻抗。方法。通过电化学逐层沉积将pDA层合并到PtBK结构中。改变层数和材料顺序,制造了多层pDA-PtBK杂化物,并评估了电性能,包括阻抗和电荷注入极限。主要结果。多层pDA-PtBK杂化物的电阻抗低至PtBK对照,电荷注入极限是对照的两倍。对于30分钟的超声搅拌试验,某些pDA-PtBK杂化物的阻抗水平很少改变,表明pDA改善了PtBK结构的机械性能。 pDA-PtBK杂合微电极可轻松记录培养的海马神经元的神经信号,背景噪声水平和信噪比分别为2.43〜3.23μV_(rms)和28.4〜69.1。意义。预计开发的pDA-PtBK混合微电极将适用于用于神经修复研究的神经传感器。

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