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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Electrodeposition of Pluronic F127 assisted rod-like EMD/carbon arrays for efficient energy storage
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Electrodeposition of Pluronic F127 assisted rod-like EMD/carbon arrays for efficient energy storage

机译:Pluronic F127辅助棒状EMD /碳阵列的电沉积可实现有效的能量存储

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In the traditional Duracell battery, the results obtained to date remain marginal in terms of cyclability. The development of the existing Zn-MnO2 with superior electrochemical performance for use in alkaline rechargeable batteries is reported. Electrolytic manganese dioxide (EMD) was synthesized from a conventional manganese sulphate bath but having a unique non-ionic surfactant (Pluronic F127), and activated carbon, in an electrolytic cell. The surface areas and morphologies of the as-prepared EMDs were influenced by the presence of these novel additives in the solution while the X-ray data revealed that there was no noticeable change in the crystal orientations thus all the EMDs were structurally similar. The synergistic effect of the optimal ratio of surfactant to carbon powder produced rod-like arrays exhibiting a larger surface area, which facilitates ion transport for better energy storage. It is interesting to note that EMD deposited in the presence of F127 showed better cyclability whereas in the presence of carbon, although it showed better storage capability, it was endowed with poor efficiency when compared with the surfactant added sample, nevertheless the results are better than the existing Zn-MnO2 technology (additive free EMD). Therefore, both the surfactant (50 mg dm(-3)) and the activated carbon (5 g dm(-3)) have been added together in the bath and the resultant EMD exhibits a high specific capacity and an excellent cycling stability. Moreover, the presence of surfactant and activated carbon improved the discharge capacity and its retention thus making this alkaline technology feasible for storing renewable energy for future use. The synergistic effect and the mechanism involved have been discussed.
机译:在传统的金霸王电池中,到目前为止,获得的结果在可循环性方面仍然是微不足道的。据报道,用于碱性可再充电电池的具有优异电化学性能的现有Zn-MnO 2的开发。电解二氧化锰(EMD)由常规的硫酸锰浴合成,但在电解池中具有独特的非离子表面活性剂(Pluronic F127)和活性炭。溶液中这些新型添加剂的存在影响了制备的EMD的表面积和形貌,而X射线数据表明,晶体取向没有明显变化,因此所有EMD在结构上都是相似的。表面活性剂与碳粉生产的棒状阵列的最佳比例的协同效应显示出较大的表面积,这有利于离子传输以实现更好的能量存储。有趣的是,在F127存在下沉积的EMD表现出更好的可循环性,而在碳存在下,尽管EMD表现出更好的存储能力,但与添加表面活性剂的样品相比,效率低下,但结果优于现有的Zn-MnO2技术(无添加剂EMD)。因此,表面活性剂(50 mg dm(-3))和活性炭(5 g dm(-3))已一起添加到浴中,所得的EMD表现出高的比容量和出色的循环稳定性。此外,表面活性剂和活性炭的存在改善了放电容量及其保留能力,因此使该碱性技术对于存储可再生能源以备将来使用是可行的。已经讨论了协同作用和涉及的机制。

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