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A bipolar nitronyl nitroxide small molecule for an all-organic symmetric redox-flow battery

机译:用于全有机对称氧化还原液流电池的双极性硝酰基硝基氧小分子

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A compound that can replace corrosive metal salts in fuel-cell-like ‘flow’ batteries has been discovered by a team in Germany. Redox flow batteries produce electrochemical energy by moving an electrolyte between separated cathode and anode compartments. These devices, which can be recharged nearly instantly by replacing the electrolyte, are set to become more sustainable thanks to a chemical synthesis developed by Ulrich S. Schubert from Friedrich Schiller University and colleagues. The team designed an organic molecule capable of acting as both battery anode and cathode through aromatic nitronyl nitroxide groups that release or take in electrons at moderate voltages. Attaching the aromatic redox units to a glycol chain gave the compound the solubility needed to make a flow battery with better capacity and efficiency than previous all-organic attempts.
机译:德国的一个研究小组发现了一种可以代替燃料电池式“液流”电池中腐蚀性金属盐的化合物。氧化还原液流电池通过在分开的阴极室和阳极室之间移动电解质来产生电化学能。这些设备几乎可以通过更换电解质立即充电,这要归功于Friedrich Schiller大学的Ulrich S. Schubert和同事开发的化学合成方法。该团队设计了一种有机分子,该有机分子能够通过芳香族亚硝酰基氮氧化物基团同时充当电池的阳极和阴极,这些基团在中等电压下释放或吸收电子。将芳族氧化还原单元连接到乙二醇链上,可使该化合物具有比以前的全有机方法更好的容量和效率,从而制成液流电池所需的溶解度。

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