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Connecting electrodes with light: one wire many electrodes

机译:用光连接电极:一根电线许多电极

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摘要

The requirement of a wire to each electrode is central to the design of any electronic device but can also be a major restriction. For example it entails space restrictions and rigid device architecture in multi-electrode devices. The finite space that is taken up by the array of electrical terminals and conductive pads also severely limits the achievable density of electrodes in the device. Here it is shown that a travelling light pointer can be used to form transient electrical connections anywhere on a monolithic semiconductor electrode that is fitted with a single peripheral electrical terminal. This is achieved using hydrogen terminated silicon electrodes that are modified with well-defined organic monolayers. It is shown that electrochemical information can be either read from or written onto these surfaces. Using this concept it is possible to form devices that are equivalent to a conventional electrode array but that do not require a predetermined architecture, and where each element of the array is temporally “connected” using light stimulus; a step change in capability for electrochemistry.
机译:每个电极的导线要求对于任何电子设备的设计都是至关重要的,但也可能是一个主要限制。例如,它在多电极设备中需要空间限制和刚性设备架构。电端子和导电垫的阵列所占据的有限空间也严重限制了设备中电极的可达到密度。这里示出了行进的光指示器可以用于在装配有单个外围电端子的单片半导体电极上的任何地方形成瞬态电连接。这可以使用氢末端硅电极实现,该电极用定义明确的有机单层修饰。结果表明,电化学信息可以从这些表面读取或写入。使用该概念,可以形成与常规电极阵列等效但不需要预定架构的设备,并且该阵列的每个元件在使用光刺激的情况下在时间上“连接”。电化学能力的逐步变化。

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