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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Evaluation of Nanoporous Polymer Membranes for Electrokinetic Energy Conversion in Power Applications
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Evaluation of Nanoporous Polymer Membranes for Electrokinetic Energy Conversion in Power Applications

机译:纳米多孔聚合物膜在电动应用中用于电动能量转换的评估

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摘要

Electrokinetic energy conversion for pumping or power generation has for the past decade regained attention with focus on applications within pumping in nanofluidics or microgenerators. Little experimental work has been published and mostly in relation to clean-room fabricated nanopores. In the present study, it is suggested that electrokinetic energy conversion has a potential as future decentralized electrical energy sources, if polymer membranes are used. On the basis of new electrokinetic measurements and literature data, we have made a systematic study of commercially available nanoporous polymer membranes and found a promising first law efficiency of 5.5% in one polymer—electrolyte system. It is likely that future more rigorous and targeted studies will find even larger conversion efficiencies.
机译:在过去的十年中,用于泵送或发电的电动能量转换重新受到关注,重点是纳米流体或微型发电机的泵送应用。很少有实验性工作被发表,并且主要与洁净室制造的纳米孔有关。在本研究中,建议如果使用聚合物膜,则电动能量转换作为未来的分散式电能来源具有潜力。根据新的电动测量和文献数据,我们对市售的纳米多孔聚合物膜进行了系统研究,发现在一种聚合物-电解质体系中,有希望的第一定律效率为5.5%。未来更严格,更有针对性的研究可能会发现更高的转化效率。

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