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摘要
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Redox flow batteries offer a readily scalable solution to grid-scale energy storage, but their application is generally limited to ambient temperatures above 0 degrees C. Now, a polyoxometalate-based chemistry has been developed to enable redox flow batteries to operate, and even thrive, under frigid conditions.
Keyword:
REDOX-FLOW BATTERY
期刊
IF:
60.1
论文数:
1.0K
被引数:
5.6W
机构
引用论文
Effect of Additives on the Low-Temperature Stability of Vanadium Redox Flow Battery Negative Half-Cell Electrolyte添加剂对全钒液流电池负极半电池电解液低温稳定性的影响
CHEMELECTROCHEM
IF3.5
A Stable Vanadium Redox-Flow Battery with High Energy Density for Large-Scale Energy Storage一种用于大规模储能的高能量密度稳定钒液流电池
Heteropoly acid negolytes for high-power-density aqueous redox flow batteries at low temperatures用于低温高功率密度水性氧化还原液流电池的杂多酸负电解质
NATURE ENERGY
IF60.1
Highly reduced and protonated aqueous solutions of [P2W18O62]6- for on-demand hydrogen generation and energy storage
NATURE CHEMISTRY
IF20.2
In Operand X-ray Absorption Fine Structure Studies of Polyoxometalate Molecular Cluster Batteries: Polyoxometalates as Electron Sponges在Operand x射线吸收中,多金属氧酸盐分子簇电池的精细结构研究: 多金属氧酸盐作为电子海绵
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