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Assessing charge contribution from thermally treated Ni foam as current collectors for Li-ion batteries

机译:评估经过热处理的镍泡沫作为锂离子电池集电器的电荷贡献

摘要

In this report we have investigated the use of Ni foam substrates as anode current collectors for Li-ion batteries. As the majority of reports in the literature focus on hydrothermal formation of materials on Ni foam followed by a high temperature anneal/oxidation step, we probed the fundamental electrochemical responses of as received Ni foam substrates and those subjected to heating at 100°C, 300°C and 450°C. Through cyclic voltammetry and galvanostatic testing, it is shown that the as received and 100°C annealed Ni foam show negligible electrochemical activity. However, Ni foams heated to higher temperature showed substantial electrochemical contributions which may lead to inflated capacities and incorrect interpretations of CV responses for samples subjected to high temperature anneals. XRD, XPS and SEM analyses clearly illustrate that the formation of electrochemically active NiO nanoparticles on the surface of the foam is responsible for this behavior. To further investigate the contribution of the oxidized Ni foam to the overall electrochemical response, we formed Co3O4 nanoflowers directly on Ni foam at 450°C and showed that the resulting electrochemical response was dominated by NiO after the first 10 charge/discharge cycles. This report highlights the importance of assessing current collector activity for active materials grown on transition metal foam current collectors for Li-ion applications.
机译:在本报告中,我们研究了将泡沫镍作为锂离子电池阳极集电器的用途。由于文献中的大多数报告都集中于在Ni泡沫上进行水热形成材料,然后进行高温退火/氧化步骤,因此我们探究了所收到的Ni泡沫基材和在100°C,300°C下加热的基材的基本电化学反应。 °C和450°C。通过循环伏安法和恒电流测试,表明原样和100°C退火的Ni泡沫塑料的电化学活性可忽略不计。但是,加热到较高温度的镍泡沫材料表现出显着的电化学作用,这可能导致容量增加以及对经受高温退火的样品的CV响应的错误解释。 XRD,XPS和SEM分析清楚地表明,在泡沫表面上形成电化学活性的NiO纳米颗粒是造成这种现象的原因。为了进一步研究氧化的镍泡沫对整体电化学响应的贡献,我们在450℃的镍泡沫上直接形成了Co3O4纳米花,并显示在最初的10个充电/放电循环后,所得的电化学响应受NiO支配。该报告强调了评估用于锂离子应用的过渡金属泡沫集电器上生长的活性材料的集电器活性的重要性。

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