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Toward Lithium Ion Batteries with Enhanced Thermal Conductivity

机译:朝着导热性更高的锂离子电池发展

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As batteries become more powerful and utilized in diverse applications, thermal management becomes one of the central problems in their application. We report the results on thermal properties of a set of different Li-ion battery electrodes enhanced with multiwalled carbon nanotubes. Our measurements reveal that the highest in-plane and cross-plane thermal conductivities achieved in the carbon-nanotube-enhanced electrodes reached up to 141 and 3.6 W/mK, respectively. The values for in-plane thermal conductivity are up to 2 orders of magnitude higher than those for conventional electrodes based on carbon black. The electrodes were synthesized via an inexpensive scalable filtration method, and we demonstrate that our approach can be extended to commercial electrode-active materials. The best performing electrodes contained a layer of γ-Fe_2O_3 nanoparticles on carbon nanotubes sandwiched between two layers of carbon nanotubes and had in-plane and cross-plane thermal conductivities of ~50 and 3 W/mK, respectively, at room temperature. The obtained results are important for thermal management in Li-ion and other high-power-density batteries.
机译:随着电池变得越来越强大并在各种应用中得到利用,热管理已成为其应用中的核心问题之一。我们报告了一组用多壁碳纳米管增强的不同锂离子电池电极的热性能的结果。我们的测量表明,在碳纳米管增强电极中实现的最高面内和跨面热导率分别达到141和3.6 W / mK。面内热导率值比传统的基于炭黑的电极高2个数量级。电极是通过廉价的可扩展过滤方法合成的,我们证明了我们的方法可以扩展到商业化的电极活性材料。在室温下,性能最佳的电极在夹在两层碳纳米管之间的碳纳米管上包含一层γ-Fe_2O_3纳米颗粒,并且在室温下的面内和截面热导率分别约为50 W和3 W / mK。获得的结果对于锂离子电池和其他高功率密度电池的热管理非常重要。

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