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Cathode Material Composed of Manganese Cobalt Hexacyanoferrate Nanoparticles for Aqueous Zinc Ion Intercalation Batteries

机译:六水合锰钴酸锰纳米颗粒的正极材料,用于水溶锌离子嵌入电池

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To accommodate the global shift towards increased energy production from renewable sources, further advancements in storage technology are needed to mitigate the intermittent nature of wind and solar. Aqueous zinc ion intercalation batteries (ZIBs) offer an inexpensive and safe alternative to the traditional lithium ion battery (LIB), making them a prime candidate for large scale storage. Metal hexacyanoferrates have been shown to be suitable cathode materials for ZIBs, allowing for the reversible insertion/extraction of the doubly charged zinc ion. In this work, we report on the performance of a cathode material composed of mixed manganese-cobalt hexacyanoferrate nanoparticles for a rechargeable ZIB. The cathode exhibits a reversibly capacity of 111 mAh/g at 25 mA/g and good capacity retention after extended cycling at 100 rnA/g. X-ray diffraction and SEM imaging reveal nanoparticles with a rhombohedral structure and sizes on the order of 20 - 60 nm. The combination of the nontoxic hexacyanoferrate cathode, with the aqueous zinc ion electrolyte offers a promising system for large scale energy storage.
机译:为了适应全球向可再生能源生产增加的转变,需要进一步提高存储技术以减轻风能和太阳能的间歇性。水性锌离子嵌入电池(ZIB)是传统锂离子电池(LIB)的廉价安全替代品,使其成为大规模存储的主要选择。金属六氰合铁酸盐已被证明是适合ZIBs的阴极材料,允许双电荷锌离子的可逆插入/萃取。在这项工作中,我们报告了由可充电ZIB组成的混合锰钴六氰合铁酸盐纳米颗粒组成的正极材料的性能。阴极在25 mA / g时表现出111 mAh / g的可逆容量,并且在100 rnA / g的长时间循环后显示出良好的容量保持率。 X射线衍射和SEM成像显示具有菱面体结构且尺寸在20-60 nm数量级的纳米颗粒。无毒的六氰基高铁酸根阴极与水性锌离子电解质的结合为大规模储能提供了一种有前途的系统。

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