首页> 外文期刊>Journal of power sources >Investigation of low-cost oligoanthraquinones for alkaline, aqueous rechargeable batteries with cell potential up to 1.13 V
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Investigation of low-cost oligoanthraquinones for alkaline, aqueous rechargeable batteries with cell potential up to 1.13 V

机译:用于碱性,水性可充电电池的低成本低聚蒽醌的研究,其电池电势高达1.13 V

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摘要

The transition to renewable energy sources has created need for stationary, low-cost electrical energy storage. A possible technology to address both cost and environmental concerns are batteries based on organic materials. The use of oligoanthraquinones as a replacement for metal hydrides or cadmium in nickel hydroxide rechargeable batteries is investigated in detail regarding polymer composition, electrochemical reversibility and electroactive species cost. Two different oligoanthraquinones are paired with a nickel hydroxide cathode and demonstrate cycling stability dependent on parameters such as supporting electrolyte strength, C-rate, and anode swelling. The energy efficiencies are up to 75% and the cell potential up to 1.13 V. Simple functionalization of the basic structure increases the cell potential by 100 mV.
机译:向可再生能源的过渡产生了对固定的低成本电能存储的需求。一种解决成本和环境问题的可能技术是基于有机材料的电池。关于聚合物组成,电化学可逆性和电活性物质成本,详细研究了寡聚蒽醌在氢氧化镍可充电电池中替代金属氢化物或镉的方法。两种不同的低聚蒽醌与氢氧化镍阴极配对,并表现出取决于诸如支持电解质强度,C速率和阳极溶胀等参数的循环稳定性。能量效率高达75%,电池电势高达1.13V。基本结构的简单功能化将电池电势提高了100 mV。

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