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Template-Free Electrochemical Growth of Ni-Decorated ZnO Nanorod Array: Application to an Anode of Lithium Ion Battery

机译:镍装饰ZnO纳米棒阵列的无模板电化学生长:在锂离子电池阳极中的应用

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摘要

ZnO nanorods (NRs) decorated with Ni nanoparticles were synthesized using a template-free electrochemical deposition in an ultra-dilute aqueous electrolyte and a subsequent galvanic reaction. The electrochemical properties of the ZnO NRs as an anode material for rechargeable Li-ion batteries were evaluated for different binder morphologies (film and close-packed spherical particles) of polyvinylidene fluoride (PVDF). Results showed that the close-packed spherical PVDF simultaneously improved electrochemical capacity and cyclability because the free-volume between the spherical PVDF helped to accommodate the volume change in the anode caused by the Li ions discharge and charge processes. Furthermore, the Ni nanoparticles decorated on the surface of ZnO NRs enhanced the electrical conductivity of the ZnO NR anode, which enabled faster electronic and ionic transport at the interface between the electrolyte and the electrode, resulting in improved electrochemical capacity. The free-volume formed by the close-packed spherical PVDF, and the decoration of metal nanoparticles are expected to provide insight on the simultaneous improvement of electrochemical capacity and cyclability in other metal oxide anode nanostructures.
机译:使用无模板电化学沉积在超稀水电解质中并随后进行电反应,合成了用Ni纳米粒子修饰的ZnO纳米棒(NR)。针对聚偏二氟乙烯(PVDF)的不同粘合剂形态(薄膜和紧密堆积的球形颗粒)评估了作为可再充电锂离子电池负极材料的ZnO NRs的电化学性能。结果表明,紧密堆积的球形PVDF同时提高了电化学容量和循环性,因为球形PVDF之间的自由体积有助于适应由Li离子放电和充电过程引起的阳极体积变化。此外,装饰在ZnO NRs表面的Ni纳米颗粒增强了ZnO NR阳极的电导率,从而能够更快地在电解质和电极之间的界面处进行电子和离子迁移,从而提高了电化学容量。紧密堆积的球形PVDF形成的自由体积以及金属纳米颗粒的装饰有望为同时提高其他金属氧化物阳极纳米结构的电化学容量和循环能力提供见识。

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