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Nanofluidic crystal: A facile, high-efficiency and high-power-density scaling up scheme for energy harvesting based on nanofluidic reverse electrodialysis

机译:纳米流体晶体:基于纳米流体反向电渗析的能量收集的简便,高效,高功率密度放大方案

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摘要

The great advances in nanotechnology call for advances in miniaturized power sources for microano-scale systems. Nanofluidic channels have received great attention as promising high-power-density substitutes for ion exchange membranes for use in energy harvesting from ambient ionic concentration gradient, namely reverse electrodialysis. This paper proposes the nanofluidic crystal (NFC), of packed nanoparticles in micro-meter-sized confined space, as a facile, high-efficiency and high-power-density scaling-up scheme for energy harvesting by nanofluidic reverse electrodialysis (NRED). Obtained from the self-assembly of nanoparticles in a micropore, the NFC forms an ion-selective network with enormous nanochannels due to electrical double-layer overlap in the nanoparticle interstices. As a proof-of-concept demonstration, a maximum efficiency of 42.3 ± 1.84%, a maximum power density of 2.82 ± 0.22 W m-2, and a maximum output power of 1.17 ± 0.09 nW/unit (nearly three orders of magnitude of amplification compared to other NREDs) were achieved in our prototype cell, which was prepared within 30 min. The current NFC-based prototype cell can be parallelized and cascaded to achieve the desired output power and open circuit voltage. This NFC-based scaling-up scheme for energy harvesting based on NRED is promising for the building of self-powered microano-scale systems.
机译:纳米技术的巨大进步要求在微米/纳米级系统的微型电源方面取得进步。纳米流体通道作为离子交换膜的有前途的高功率密度替代品而受到极大关注,该替代品可用于从环境离子浓度梯度(即反向电渗析)中收集能量。本文提出了在微米大小的密闭空间中填充纳米颗粒的纳米流体晶体(NFC),作为通过纳米流体反向电渗析(NRED)收集能量的便捷,高效和高功率密度放大方案。从纳米粒子在微孔中的自组装获得,由于纳米粒子间隙中的双电层重叠,NFC形成了具有巨大纳米通道的离子选择网络。作为概念验证的演示,最大效率为42.3±1.84%,最大功率密度为2.82±0.22 W m-2,最大输出功率为1.17±0.09 nW /单位(接近3个数量级)。与我们的其他NRED相比,我们的原型细胞在30分钟内即可完成扩增。当前基于NFC的原型单元可以并行和级联以实现所需的输出功率和开路电压。这种基于NRED的基于NFC的能量收集按比例放大方案对于构建自供电的微型/纳米级系统很有希望。

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