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Ionic Current Rectification in Soft-Matter Diodes with Liquid-Metal Electrodes

机译:带液金属电极的软物质二极管中的离子电流整流

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摘要

A soft-matter-based diode composed of hydrogel and liquid metal (eutectic gallium indium, EGaln) is presented. The ability to control the thickness, and thus resistivity, of an oxide skin on the metal enables rectification. First, a simple model system with liquid-metal/electrolyte-solution/Pt interfaces is characterized. The electrically insulating oxide skin on the EGaln electrode is reduced or oxidized further depending on the direction of the bias, thereby allowing unidirectional ionic current. The forward current of the diode increases as the conductivity of the electrolyte increases, whereas backward current depends on the pH of the medium in contact with the insulating oxide layer on the ECaln electrode. As a result, the diode shows a higher rectification ratio (defined as the ratio of forward to backward current measured at the same absolute bias) with more conductive electrolyte at neutral pH. Replacement of the liquid electrolyte solution with a hydrogel improves the structural stability of the soft diode. The rectification performance also improves due to the increased ionic conductivity by the gel. Finally, a diode composed entirely of soft materials by replacing the platinum electrode with a second liquid-metal electrode is presented. Contacting each liquid metal with a polyelectrolyte gel featuring different pH values provided asymmetry in the device, which is necessary for rectification. A hydrogel layer infused with a strong basic polyelectrolyte removes the insulating oxide layer, allowing one interface with the ECaln electrode to be conductive regardless of the direction of bias. Thus, the oxide layer at the other interface rectifies the current.
机译:提出了一种由水凝胶和液态金属(共晶镓铟,EGaln)组成的基于软物质的二极管。控制金属上的氧化皮厚度和电阻率的能力使得能够进行整流。首先,描述了具有液态金属/电解质溶液/铂界面的简单模型系统。根据偏压的方向,EGaln电极上的电绝缘氧化物表皮会进一步还原或氧化,从而允许单向离子电流。二极管的正向电流随着电解质的电导率的增加而增加,而反向电流取决于与ECaln电极上的绝缘氧化物层接触的介质的pH值。结果,二极管在中性pH值下具有更多的导电电解质,显示出更高的整流比(定义为在相同的绝对偏置下测得的正向电流与反向电流之比)。用水凝胶代替液体电解质溶液改善了软二极管的结构稳定性。由于凝胶增加的离子电导率,整流性能也得到改善。最后,提出了一种用软金属材料制成的二极管,方法是用第二个液态金属电极代替铂电极。使每种液态金属与具有不同pH值的聚电解质凝胶接触,在设备中提供了不对称性,这对于精馏是必不可少的。注入强碱性聚电解质的水凝胶层可去除绝缘氧化物层,从而使与ECaln电极的一个界面都具有导电性,而与偏压方向无关。因此,另一界面处的氧化物层对电流进行整流。

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  • 来源
    《Advanced Functional Materials》 |2012年第3期|p.625-631|共7页
  • 作者单位

    Department of Chemical and Biomolecular Engineering North Carolina State University Raleigh, NC 27695-7905, USA;

    Department of Chemical and Biomolecular Engineering North Carolina State University Raleigh, NC 27695-7905, USA;

    Department of Chemical and Biomolecular Engineering North Carolina State University Raleigh, NC 27695-7905, USA;

    Department of Chemical and Biomolecular Engineering North Carolina State University Raleigh, NC 27695-7905, USA;

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