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首页> 外文期刊>Angewandte Chemie >A Bio-Inspired, Heavy-Metal-Free, Dual-Electrolyte Liquid Battery towards Sustainable Energy Storage
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A Bio-Inspired, Heavy-Metal-Free, Dual-Electrolyte Liquid Battery towards Sustainable Energy Storage

机译:生物启发的无重金属双电解液液态电池,致力于可持续能源存储

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摘要

Wide-scale exploitation of renewable energy requires low-cost efficient energy storage devices. The use of metal-free, inexpensive redox-active organic materials represents a promising direction for environmental-friendly, cost-effective sustainable energy storage. To this end, a liquid battery is designed using hydroquinone (H(2)BQ) aqueous solution as catholyte and graphite in aprotic electrolyte as anode. The working potential can reach 3.4V, with specific capacity of 395mAhg(-1) and stable capacity retention about 99.7% per cycle. Such high potential and capacity is achieved using only C, H and O atoms as building blocks for redox species, and the replacement of Li metal with graphite anode can circumvent potential safety issues. As H(2)BQ can be extracted from biomass directly and its redox reaction mimics the bio-electrochemical process of quinones in nature, using such a bio-inspired organic compound in batteries enables access to greener and more sustainable energy-storage technology.
机译:大规模开发可再生能源需要低成本高效的储能设备。无金属,廉价的氧化还原活性有机材料的使用代表了环保,经济高效的可持续能源存储的有前途的方向。为此,设计了一种液体电池,该液体电池使用氢醌(H(2)BQ)水溶液作为阴极电解质,而质子惰性电解质中的石墨作为阳极。工作电势可以达到3.4V,比容量为395mAhg(-1),每个周期的容量保持率稳定在99.7%。仅使用C,H和O原子作为氧化还原物质的构建基块就可以实现如此高的电势和容量,而用石墨阳极代替Li金属可以规避潜在的安全问题。由于H(2)BQ可以直接从生物质中提取,其氧化还原反应模仿自然界中醌的生物电化学过程,因此,在电池中使用这种受生物启发的有机化合物能够获得更绿色,更可持续的储能技术。

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