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可植入金属电极的材料分析与电化学阻抗

Materials analyses and electrochemical impedance of implantable metal electrodes.

作者信息

Howlader Matiar M R, Ul Alam Arif, Sharma Rahul P, Deen M Jamal

机构信息

Department of Electrical and Computer Engineering, McMaster University, Hamilton, Ontario L8S 4K1, Canada.

出版信息

Phys Chem Chem Phys. 2015 Apr 21;17(15):10135-45. doi: 10.1039/c4cp05899b.

DOI:10.1039/c4cp05899b
PMID:25790136
Abstract

Implantable electrodes with high flexibility, high mechanical fixation and low electrochemical impedance are desirable for neuromuscular activation because they provide safe, effective and stable stimulation. In this paper, we report on detailed materials and electrical analyses of three metal implantable electrodes - gold (Au), platinum (Pt) and titanium (Ti) - using X-ray photoelectron spectroscopy (XPS), scanning acoustic microscopy, drop shape analysis and electrochemical impedance spectroscopy. We investigated the cause of changes in electrochemical impedance of long-term immersed Au, Pt and Ti electrodes on liquid crystal polymers (LCPs) in phosphate buffered saline (PBS). We analyzed the surface wettability, surface and interface defects and the elemental depth profile of the electrode-adhesion layers on the LCP. The impedance of the electrodes decreased at lower frequencies, but increased at higher frequencies compared with that of the short-term immersion. The increase of impedances was influenced by the oxidation of the electrode/adhesion-layers that affected the double layer capacitance behavior of the electrode/PBS. The oxidation of the adhesion layer for all the electrodes was confirmed by XPS. Alkali ions (sodium) were adsorbed on the Au and Pt surfaces, but diffused into the Ti electrode and LCPs. The Pt electrode showed a higher sensitivity to surface and interface defects than that of Ti and Au electrodes. These findings may be useful when designing electrodes for long-term implantable devices.

摘要

具有高柔韧性、高机械固定性和低电化学阻抗的可植入电极对于神经肌肉激活是理想的,因为它们能提供安全、有效且稳定的刺激。在本文中,我们报告了对三种金属可植入电极——金(Au)、铂(Pt)和钛(Ti)——使用X射线光电子能谱(XPS)、扫描声学显微镜、液滴形状分析和电化学阻抗谱进行的详细材料和电学分析。我们研究了长期浸泡在磷酸盐缓冲盐水(PBS)中的液晶聚合物(LCP)上的金、铂和钛电极的电化学阻抗变化的原因。我们分析了电极在LCP上的表面润湿性、表面和界面缺陷以及电极-粘附层的元素深度分布。与短期浸泡相比,电极的阻抗在较低频率下降低,但在较高频率下增加。阻抗的增加受到电极/粘附层氧化的影响,这影响了电极/PBS的双层电容行为。通过XPS证实了所有电极的粘附层都发生了氧化。碱金属离子(钠)吸附在金和铂表面,但扩散到钛电极和LCP中。铂电极对表面和界面缺陷的敏感性高于钛电极和金电极。这些发现可能对设计长期可植入设备的电极有用。

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