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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Light-Activated Electrochemistry for the Two-Dimensional Interrogation of Electroactive Regions on a Monolithic Surface with Dramatically Improved Spatial Resolution
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Light-Activated Electrochemistry for the Two-Dimensional Interrogation of Electroactive Regions on a Monolithic Surface with Dramatically Improved Spatial Resolution

机译:光活化电化学用于二维查询整体表面上具有显着改善的空间分辨率的电活性区域

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摘要

The concept of light-activated electrochemistry (LAE) was recently presented where faradaic electrochemistry could be spatially resolved on a monolithic silicon electrode by illuminating the specific region with light. A major implication from the previous study using illumination from the nonsolution side, or backside, is that the spatial resolution is limited by the finite thickness of silicon wafer. To overcome this restriction, and enable the further application of LAB, in combination with optical imaging for example, herein the spatial resolution of LAE using topside illumination (illumination from the solution side) is explored. The applied potential and irradiated light intensity are found to have significant effects on the spatial resolution. A spatial resolution of similar to 30 mu m was achieved with optimal parameters, which is a 20 times improvement compared with the previously reported backside illumination design, demonstrating the potential application of the strategy including microarray patterning of silicon or for single cell analysis.
机译:最近提出了光激活电化学(LAE)的概念,其中法拉第电化学可以通过用光照射特定区域在单片硅电极上进行空间分辨。以前使用非溶液侧或背面照射的研究的一个主要含义是,空间分辨率受硅晶片有限厚度的限制。为了克服此限制,并允许进一步应用LAB,例如结合光学成像,在本文中探讨了使用顶部照明(从溶液侧照明)的LAE的空间分辨率。发现施加的电势和照射的光强度对空间分辨率具有显着影响。使用最佳参数可以实现类似于30微米的空间分辨率,这比以前报道的背面照明设计提高了20倍,证明了该策略的潜在应用包括硅的微阵列图案化或用于单细胞分析。

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