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首页> 外文期刊>Thin Solid Films >Graded conducting titanium-iridium oxide coatings for bioelectrodes in neural systems
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Graded conducting titanium-iridium oxide coatings for bioelectrodes in neural systems

机译:用于神经系统中生物电极的渐变导电钛铱氧化物涂层

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Mixed conducting titanium iridium oxides were synthesised as coatings for electrodes and tested in biological media. The oxides do not passivate the conducting platinum substrate, and add a variable oxidation state to the electrode surface which will prevent radical formation. These oxides are an affordable alternative to the more appropriate iridium oxides, with the added properties of titanium. Stratified stoichiometry and concentration gradients are present on the nanometre scale, and the coating surfaces are enriched with iridium. The charge capacity depends on the amount of iridium and is therefore lower than for pure iridium oxides, while other electrochemical responses are similar to those of lrOx. These materials are an inexpensive alternative to pure precious metal oxides and feature natural segregation on the nanometre scale in thin coatings.
机译:合成了混合导电钛铱氧化物作为电极涂层,并在生物介质中进行了测试。氧化物不会钝化导电的铂基板,并会在电极表面添加可变的氧化态,这将防止自由基的形成。这些氧化物是更合适的铱氧化物的可负担的替代品,具有钛的附加性能。分层的化学计量和浓度梯度存在于纳米级,并且涂层表面富含铱。充电容量取决于铱的量,因此低于纯氧化铱,而其他电化学响应与lrOx相似。这些材料是纯贵金属氧化物的廉价替代品,并且具有薄涂层中纳米级的自然偏析特性。

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