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Engineering Catalysis at Solid-Solid Interfaces Using Non-Precious Mixed Metal Oxides for Energy Storage in Next Generation Metal-Air Batteries

机译:使用非珍贵的混合金属氧化物在下一代金属 - 空气电池中使用非珍贵混合金属氧化物的固体界面的工程催化

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Advancing our understanding of solid-solid interfacial electrocatalysis is central for engineering the next generation energy storage technologies. Li-O_2 batteries provide the highest energy density among all battery technologies, making them attractive for the widespread electrification of the transportation (>500 miles) and the aviation sectors. These regenerative systems rely on the reversible redox chemistry between metallic Li and molecular O_2 leading to the formation and dissociation of solid Li_xO_2species (xLi~+ + O_2 + xe~- -> Li_xO_2; E~0 = 3.0 V vs. Li/Li~+; 1=
机译:推进我们对固体型界面电催化分析的理解是工程的中央,下一代能量存储技术。 Li-O_2电池在所有电池技术中提供最高的能量密度,使其对运输的广泛电气化(> 500英里)和航空部门具有吸引力。这些再生系统依赖于金属锂和分子O_2之间的可逆氧化还原化学导致固体Li_XO_2特异性的形成和解离(XLI〜+ + O_2 + XE〜 - > LI_XO_2; E〜0 = 3.0 V与LI / LI〜 +; 1 =

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