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Diamond-coated ‘black silicon’ as a promising material for high-surface-area electrochemical electrodes and antibacterial surfaces

机译:金刚石涂层的“黑硅”是用于高表面积电化学电极和抗菌表面的有前途的材料

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摘要

This report describes a method to fabricate high-surface-area boron-doped diamond (BDD) electrodes using so-called ‘black silicon’ (bSi) as a substrate. This is a synthetic nanostructured material that contains high-aspect-ratio nano-protrusions, such as spikes or needles, on the Si surface produced via plasma etching. We now show that coating a bSi surface composed of 15-μm-high needles conformably with BDD produces a robust electrochemical electrode with high sensitivity and high electroactive area. A clinically relevant demonstration of the efficacy of these electrodes is shown by measuring their sensitivity for detection of dopamine (DA) in the presence of an excess of uric acid (UA). Finally, the nanostructured surface of bSi has recently been found to generate a mechanical bactericidal effect, killing both Gram-negative and Gram-positive bacteria at high rates. We will show that BDD-coated bSi also acts as an effective antibacterial surface, with the added advantage that being diamond-coated it is far more robust and less likely to become damaged than Si.
机译:该报告介绍了一种使用所谓的“黑硅”(bSi)作为衬底制造高表面积掺硼金刚石(BDD)电极的方法。这是一种合成的纳米结构材料,该材料在通过等离子体蚀刻产生的Si表面上包含高纵横比的纳米突起,例如尖峰或针状。现在我们表明,用BDD涂层由15-μm高的针组成的bSi表面可产生具有高灵敏度和高电活性面积的坚固的电化学电极。通过在过量尿酸(UA)存在下测量它们对多巴胺(DA)的检测灵敏度,可以证明这些电极具有临床意义。最后,近来发现bSi的纳米结构表面具有机械杀菌作用,可高效率地杀死革兰氏阴性菌和革兰氏阳性菌。我们将证明BDD涂层的bSi还可作为有效的抗菌表面,其附加的优势是,与Si相比,金刚石涂层的bSi坚固得多,损坏的可能性也小得多。

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