论文标题

受限控制的水发挥高能量密度电化学双层电容

Confinement-controlled Water Engenders High Energy Density Electrochemical-double-layer Capacitance

论文作者

Melnik, Svetlana, Ryzhov, Alexander, Kiselev, Alexei, Radenovic, Aleksandra, Weil, Tanja, Stevenson, Keith J., Artemov, Vasily G.

论文摘要

在整个设备生命周期中,可再生能源领域至关重要的是需要低成本和环境中性的能源储能解决方案。但是,标准水基电化学系统的有限性能阻止了它们在特定应用中的使用。同时,最近的基本研究揭示了碳基纳米材料固体界面附近的水的介电异常。与散装水性质相反,这些在纳米料中的水异常以及在存在电场的情况下尚未被理解和使用。在这里,我们通过实验研究界面水层在电化学双层电容中产生和存储电荷的能力。我们演示了“仅水”膜电极组件的原型。该原型表现出具有与现有电池和超电容器竞争的特征,而无需使用电解质作为离子载体。结果为开发高能密度电化学双层电容器提供了动力,并为生态中性电池,燃料电池和纳米流体设备开辟了其他途径。

The renewable energy sector critically needs low-cost and environmentally neutral energy storage solutions throughout the entire device life cycle. However, the limited performance of standard water-based electrochemical systems prevents their use in specific applications. Meanwhile, recent fundamental studies revealed dielectric anomalies of water near solid-liquid interfaces of carbon-based nanomaterials. In contrast to the bulk water properties, these anomalies of water under nano-confinement and in the presence of electric fields have not yet been understood and used. Here, we experimentally study the ability of the interfacial water layer to engender and store charge in electrochemical double-layer capacitance. We demonstrate the prototype of a 'water only' membrane-electrode assembly. The prototype exhibits characteristics with a perspective of competing with existing batteries and supercapacitors without using electrolytes as ionic carriers. The results provide the impetus for developing high-energy-density electrochemical double-layer capacitors and open up other avenues for ecologically-neutral batteries, fuel cells, and nanofluidic devices.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源