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Layer-by-layer nanoassembly of iridium oxide/platinum-black for low impedance, high charge injecting microelectrode applications

机译:乙醇铱层层纳米组件,用于低阻抗的氧化铱/铂 - 黑色,高电荷注射微电极应用

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We report an electrode device with a low impedance and high charge injecting characteristics for a powerful application to micro/nano-scale electrophysiological measurements of neuron/cells. Due to the small effective electrode area, conventional microelectrodes exhibit high interfacial electrode impedance (∼10 MΩ at 1 kHz) and low charge injection characteristics, making the targeted cells impossible to record/stimulate. To overcome these limitations, we propose enhanced surface-area of an electrode with a low impedance material, based on layer-by-layer assembled iridium oxide (IrOx)/platinum-black (Pt-black) with nano-scale roughness. The assembled nanorough-IrOx/Pt-black electrode exhibits 2 times lower impedance and 2.4 times larger injection delivery capacity (QCDC) compared to a planer-IrOx electrode with the same size. Additionally, we fabricated nanorough-Ir/Pt-black tipped microprobes and demonstrated in saline, while improved stimulating currents were observed.
机译:我们报告了具有低阻抗和高电荷注入特性的电极装置,用于强大的应用于神经元/细胞的微/纳米级电生理学测量。由于有效电极面积小,传统的微电极表现出高界面电极阻抗(〜10mΩ,在1 kHz时)和低电荷注入特性,使目标细胞无法记录/刺激。为了克服这些限制,基于逐层组装的氧化铱(IROX)/铂 - 黑色(Pt-Black),提出了具有低阻抗材料的电极的增强表面区域,其具有纳米级粗糙度。与具有相同尺寸相同尺寸的刨床 - IROX电极相比,组装的纳米 - 载体/ Pt-黑电极表现出2倍较低的阻抗和2.4倍较大的注射输送能力(Q CDC )。另外,我们制造了纳米 - 中/ Pt-Black尖端的微生物,并在盐水中证明,同时观察到改善的刺激电流。

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