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首页> 外文期刊>Journal of power sources >Formulation and characterization of ultra-thick electrodes for high energy lithium-ion batteries employing tailored metal foams
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Formulation and characterization of ultra-thick electrodes for high energy lithium-ion batteries employing tailored metal foams

机译:使用量身定制的金属泡沫的高能锂离子电池超厚电极的配制和表征

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摘要

Increasing the thickness of a battery electrode without comprising cell electrochemical performance, such as power density and cycling stability, is very challenging. In this work, we demonstrate the utility of 3D (three dimensional) Cu foam framework as a current collector for building carbon negative electrodes as thick as 1.2 mm. When tested in a bipolar configuration, electrodes of 1.2 and 0.6 mm thick delivered capacities of over 350mAhg-1 (>95% of theoretical capacity) up to a C/5 rate. We have also assembled a full cell composed of a 1.2 mm thick negative electrode with Cu foam as the current collector and a 1.2mm thick 1333 (LiNi1/3Co1/3O2) positive electrode with Al foam as the current collector. The cell exhibited good capacity retention at low rates. These results underscore the promise of 3D foam structures in terms of enabling ultra-thick electrodes for high energy density battery applications.
机译:在不包括电池电化学性能(例如功率密度和循环稳定性)的情况下增加电池电极的厚度是非常具有挑战性的。在这项工作中,我们演示了3D(三维)Cu泡沫框架作为集电器用于构建厚达1.2毫米的碳负极的实用性。在双极配置下进行测试时,厚度为1.2和0.6毫米的电极可提供超过350mAhg-1(大于理论容量的95%)的容量,最高C / 5速率。我们还组装了一个完整的电池,该电池由1.2毫米厚的负电极和泡沫铝作为集电器,而1.2毫米厚的1333(LiNi1 / 3Co1 / 3O2)正极由泡沫铝作为集电器。该电池在低速率下显示出良好的容量保持率。这些结果强调了3D泡沫结构在实现超厚电极以用于高能量密度电池应用方面的前景。

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