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一种用于混合 Na-Air/海水电池的金属有机框架衍生多孔钴锰氧化物双功能电催化剂。

A Metal-Organic Framework Derived Porous Cobalt Manganese Oxide Bifunctional Electrocatalyst for Hybrid Na-Air/Seawater Batteries.

机构信息

School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST) , UNIST-gil 50, Ulsan 44919, Republic of Korea.

Energy Materials and Devices Lab, 4TOONE Corporation , UNIST-gil 50, Ulsan 44919, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2016 Dec 7;8(48):32778-32787. doi: 10.1021/acsami.6b10082. Epub 2016 Nov 23.

Abstract

Spinel-structured transition metal oxides are promising non-precious-metal electrocatalysts for oxygen electrocatalysis in rechargeable metal-air batteries. We applied porous cobalt manganese oxide (CMO) nanocubes as the cathode electrocatalyst in rechargeable seawater batteries, which are a hybrid-type Na-air battery with an open-structured cathode and a seawater catholyte. The porous CMO nanocubes were synthesized by the pyrolysis of a Prussian blue analogue, Mn[Co(CN)]·nHO, during air-annealing, which generated numerous pores between the final spinel-type CMO nanoparticles. The porous CMO electrocatalyst improved the redox reactions, such as the oxygen evolution/reduction reactions, at the cathode in the seawater batteries. The battery that used CMO displayed a voltage gap of ∼0.53 V, relatively small compared to that of the batteries employing commercial Pt/C (∼0.64 V) and Ir/C (∼0.73 V) nanoparticles and without any catalyst (∼1.05 V) at the initial cycle. This improved performance was due to the large surface area (catalytically active sites) and the high oxidation states of the randomly distributed Co and Mn cations in the CMO. Using a hard carbon anode, the Na-metal-free seawater battery exhibited a good cycle performance with an average discharge voltage of ∼2.7 V and a discharge capacity of ∼190 mAh g during 100 cycles (energy efficiencies of 74-79%).

摘要

尖晶石结构的过渡金属氧化物是一种很有前途的非贵金属电催化剂,可用于可再充电金属空气电池中的氧电催化。我们将多孔钴锰氧化物(CMO)纳米立方体用作可再充电海水电池的阴极电催化剂,这是一种具有开放式阴极和海水电解质的混合式 Na-空气电池。多孔 CMO 纳米立方体是通过在空气退火过程中热解普鲁士蓝类似物 Mn[Co(CN)]·nH2O 来合成的,这在最终的尖晶石型 CMO 纳米颗粒之间产生了许多孔。多孔 CMO 电催化剂改善了海水电池中阴极的氧化还原反应,例如氧的析出/还原反应。使用 CMO 的电池在初始循环时显示出约 0.53 V 的电压间隙,与使用商业 Pt/C(约 0.64 V)和 Ir/C(约 0.73 V)纳米颗粒的电池(约 0.64 V)以及没有任何催化剂(约 1.05 V)相比,这个电压间隙相对较小。这种改进的性能归因于 CMO 中随机分布的 Co 和 Mn 阳离子的大表面积(催化活性位点)和高氧化态。使用硬碳阳极,无 Na 金属的海水电池在 100 次循环中表现出良好的循环性能,平均放电电压约为 2.7 V,放电容量约为 190 mAh g(能量效率为 74-79%)。

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