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具有仅 100%超大尺寸锂的灵活稳定的高能量锂硫全电池。

Flexible and stable high-energy lithium-sulfur full batteries with only 100% oversized lithium.

机构信息

Laboratory for Advanced Interfacial Materials and Devices, Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hong Kong SAR, China.

Department of Materials Science and Engineering, Stanford University, Stanford, CA, 94305, USA.

出版信息

Nat Commun. 2018 Oct 26;9(1):4480. doi: 10.1038/s41467-018-06879-7.

Abstract

Lightweight and flexible energy storage devices are urgently needed to persistently power wearable devices, and lithium-sulfur batteries are promising technologies due to their low mass densities and high theoretical capacities. Here we report a flexible and high-energy lithium-sulfur full battery device with only 100% oversized lithium, enabled by rationally designed copper-coated and nickel-coated carbon fabrics as excellent hosts for lithium and sulfur, respectively. These metallic carbon fabrics endow mechanical flexibility, reduce local current density of the electrodes, and, more importantly, significantly stabilize the electrode materials to reach remarkable Coulombic efficiency of >99.89% for a lithium anode and >99.82% for a sulfur cathode over 400 half-cell charge-discharge cycles. Consequently, the assembled lithium-sulfur full battery provides high areal capacity (3 mA h cm), high cell energy density (288 W h kg and 360 W h L), excellent cycling stability (260 cycles), and remarkable bending stability at a small radius of curvature (<1 mm).

摘要

我们报道了一种灵活且高能量的锂硫全电池装置,仅使用 100%超尺寸锂,得益于合理设计的铜涂层和镍涂层碳纤维织物分别作为锂和硫的优异主体。这些金属碳纤维织物赋予了机械灵活性,降低了电极的局部电流密度,更重要的是,显著稳定了电极材料,使锂阳极的库仑效率超过 99.89%,硫阴极的库仑效率超过 99.82%,在 400 次半电池充放电循环中。因此,组装的锂硫全电池提供了高面容量(3 mA h cm)、高电池能量密度(288 W h kg 和 360 W h L)、出色的循环稳定性(260 次循环)以及在小曲率半径(<1 mm)下的出色弯曲稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/6203774/dcdd4f5037bf/41467_2018_6879_Fig1_HTML.jpg

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