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首页> 外文期刊>Electrochimica Acta >Hierarchical porous Co_3O_4 films with size-adjustable pores as Li ion battery anodes with excellent rate performances
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Hierarchical porous Co_3O_4 films with size-adjustable pores as Li ion battery anodes with excellent rate performances

机译:具有可调节大小的孔的分层多孔Co_3O_4膜,作为锂离子电池负极,具有出色的倍率性能

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摘要

Constructing hierarchical porous structures on the current collectors is an attractive strategy for improving the rate performance of the Li ion battery electrodes. However, preparing hierarchical porous structures normally requires hard or soft templates to create hollows or pores in different sizes. Rigorous preparation conditions are needed to control the size (especially nanosize) and size distribution of the pores obtained by conventional methods. Herein, we describe a template-free two-step synthesis process to prepare hierarchical porous Co_3O_4 films on Ni foam substrates. In this synthesis process, free-standing mesoporous precursor flakes are deposited on Ni foams by an electrochemical method. Subsequently, the meosporous precursor flake arrays are calcined to obtain hierarchical porous Co_3O_4 films. More strikingly, the size of the mesopores in the flakes can be adjusted by altering the calcination temperature. The structure and morphology of the samples are characterized by scanning electron microscopy, transmission electron microscopy and Brunauer-Emmett-Teller measurements. The relationship of the in-flake-pore size and the calcinations temperature is proposed here. Electrochemical tests have revealed that the hierarchical porous Co_3O_4 films demonstrate excellent rate performances (650 mAh g~(-1) at 30 C) as Li ion battery anodes due to the hierarchical porous structure, which endows fast ion transmission.
机译:在集电器上构造分层多孔结构是用于改善锂离子电池电极的倍率性能的有吸引力的策略。然而,制备分级的多孔结构通常需要硬或软的模板以产生不同尺寸的凹陷或孔。需要严格的制备条件以控制通过常规方法获得的孔的尺寸(特别是纳米尺寸)和尺寸分布。在这里,我们描述了无模板的两步合成过程,以在镍泡沫基底上制备分层的多孔Co_3O_4膜。在该合成方法中,通过电化学方法将独立的中孔前体薄片沉积在Ni泡沫上。随后,煅烧介孔前体薄片阵列以获得分层的多孔Co_3O_4膜。更惊人的是,薄片中中孔的大小可以通过改变煅烧温度来调节。样品的结构和形态通过扫描电子显微镜,透射电子显微镜和Brunauer-Emmett-Teller测量来表征。本文提出了片内孔尺寸与煅烧温度的关系。电化学测试表明,由于多孔结构的分层,Co_3O_4多层膜作为锂离子电池阳极具有优异的倍率性能(在30 C下为650 mAh g〜(-1)),具有快速的离子传输能力。

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