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Ionic Circuits Powered by Reverse Electrodialysis for an Ultimate Iontronic System

机译:反向电渗析为最终离子系统提供动力的离子电路

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摘要

Despite numerous reports on iontronic devices, there has been no whole circuit working in aqueous media including even power source. Herein, we introduce complete ionic circuits powered by reverse electrodialysis (RED) for the first time without employing any electronic components. The RED-driven polyelectrolyte diode successfully shows rectification behavior which is verified by monitoring dynamic ion distribution through fluorescence in real-time. We can also turn on and off the voltage applied to the circuit, and apply an arbitrary voltage by precisely manipulating the pressure imposed to an elastic connection tube filled with electrolyte. Furthermore, this new concept containing ionic power source advances to a more sophisticated ionic OR logic gate. The proposed system paves the way to develop not only passive iontronic devices (e.g. current ionic diode), but active ones requiring a source of energy, particularly such as a neuron-like information processor powered by fully ionic systems, and thereby aqueous computers.
机译:尽管有许多有关离子电子设备的报道,但在水性介质(甚至包括电源)中,还没有整个电路能够正常工作。在本文中,我们首次引入了由逆电渗析(RED)驱动的完整离子电路,而无需使用任何电子组件。 RED驱动的聚电解质二极管成功地显示出整流行为,该行为已通过实时监测荧光中动态离子分布而得到验证。我们还可以打开和关闭施加到电路的电压,并通过精确地控制施加到装有电解质的弹性连接管上的压力来施加任意电压。此外,这种包含离子电源的新概念发展到了更为复杂的离子“或”逻辑门。所提出的系统不仅为开发无源离子电子器件(例如电流离子二极管)铺平了道路,而且为需要能量源的有源器件,特别是诸如由全离子系统供电的类神经元信息处理器,从而开发水性计算机铺平了道路。

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