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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Selection of oxygen reduction catalysts for rechargeable lithium-air batteries—Metal or oxide?
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Selection of oxygen reduction catalysts for rechargeable lithium-air batteries—Metal or oxide?

机译:为可充电锂空气电池选择氧气还原催化剂的方法-金属还是氧化物?

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Carbon-supported Pd and PdO nanocatalysts were synthesised using either chemical reduction or thermal synthesis procedures and were used as model metal and oxide catalysts for oxygen reduction in rechargeable lithium-air batteries. The Pd metal catalyst showed excellent initial performance, e.g. a discharge capacity of 855 mAh (g solids)~(-1). However, the PdO catalyst displayed superior capacity retention to the Pd catalyst, producing a discharge capacity of 336 mAh (g solids)~(-1) after 10 cycles, i.e. the capacity retention was 6% per cycle. The activity and stability of Pd metal and oxide catalysts were found to be closely related to their intrinsic catalytic properties and structural changes during charge/discharge cycles in Li-air batteries. The implication of such a difference is discussed. Model Pd/C and PdO/C catalysts were compared with other widely used carbon-supported metal and oxide catalysts, including Pt/C, Ru/C, RuO2/C and MnO2/C.
机译:碳载Pd和PdO纳米催化剂是采用化学还原或热合成方法合成的,并用作可充电锂空气电池中氧还原的模型金属和氧化物催化剂。钯金属催化剂显示出优异的初始性能,例如。放电容量为855 mAh(g固体)〜(-1)。然而,PdO催化剂显示出优于Pd催化剂的容量保持力,在10个循环后产生336mAh(g固体)〜(-1)的放电容量,即每循环容量保持率为6%。在锂空气电池中,发现钯金属和氧化物催化剂的活性和稳定性与其固有的催化性能和结构变化密切相关。讨论了这种差异的含义。将模型Pd / C和PdO / C催化剂与其他广泛使用的碳载金属和氧化物催化剂(包括Pt / C,Ru / C,RuO2 / C和MnO2 / C)进行了比较。

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