首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Open mesoporous spherical shell structured Co3O4 with highly efficient catalytic performance in Li-O-2 batteries
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Open mesoporous spherical shell structured Co3O4 with highly efficient catalytic performance in Li-O-2 batteries

机译:在Li-O-2电池中具有高效催化性能的开孔介孔球壳结构Co3O4

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摘要

An open mesoporous spherical shell structured (OMSS) Co3O4 was designed and synthesized through a two-step process. The OMSS Co3O4 with a diameter around 1 mm is constructed from a large number of nanoparticles mainly with (111) preferential exposed crystal planes. Superior catalytic activity for oxygen evolution reaction (OER) can be manifested in Li-O-2 batteries with the charge voltage platform reduced to similar to 3.6 V. An outstanding performance of cycling stability was also achieved with a cut-off specific capacity of 1000 mA h g(-1) over 60 cycles. The fantastic cycling performance may be attributed to the open mesoporous spherical shell structure with high specific surface area which improves the transport capability of oxygen, increases the active sites and the sedimentary space of discharge products. It almost gets the highest cycling performance among metal oxide catalysts used in Li-O-2 batteries reported to date.
机译:通过两步法设计并合成了一种开放的介孔球形壳结构(OMSS)Co3O4。直径约1mm的OMSS Co3O4由大量主要具有(111)优先暴露晶面的纳米粒子构成。在Li-O-2电池中,其充电电压平台降低至接近3.6 V,可以表现出对放氧反应(OER)的出色催化活性。在截止比容量为1000的情况下,还具有出色的循环稳定性能超过60个周期的mA hg(-1)。出色的循环性能可归因于具有高比表面积的开放中孔球形壳结构,该结构改善了氧气的传输能力,增加了放电产物的活性位点和沉积空间。在迄今为止报道的Li-O-2电池中使用的金属氧化物催化剂中,它几乎具有最高的循环性能。

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