State Key Laboratory of Molecular Engineering of Polymers, Fudan University, Shanghai, China.
Department of Macromolecular Science, Fudan University, Shanghai, China.
Nature. 2021 Sep;597(7874):57-63. doi: 10.1038/s41586-021-03772-0. Epub 2021 Sep 1.
Fibre lithium-ion batteries are attractive as flexible power solutions because they can be woven into textiles, offering a convenient way to power future wearable electronics. However, they are difficult to produce in lengths of more than a few centimetres, and longer fibres were thought to have higher internal resistances that compromised electrochemical performance. Here we show that the internal resistance of such fibres has a hyperbolic cotangent function relationship with fibre length, where it first decreases before levelling off as length increases. Systematic studies confirm that this unexpected result is true for different fibre batteries. We are able to produce metres of high-performing fibre lithium-ion batteries through an optimized scalable industrial process. Our mass-produced fibre batteries have an energy density of 85.69 watt hour per kilogram (typical values are less than 1 watt hour per kilogram), based on the total weight of a lithium cobalt oxide/graphite full battery, including packaging. Its capacity retention reaches 90.5% after 500 charge-discharge cycles and 93% at 1C rate (compared with 0.1C rate capacity), which is comparable to commercial batteries such as pouch cells. Over 80 per cent capacity can be maintained after bending the fibre for 100,000 cycles. We show that fibre lithium-ion batteries woven into safe and washable textiles by industrial rapier loom can wirelessly charge a cell phone or power a health management jacket integrated with fibre sensors and a textile display.
纤维锂离子电池作为灵活的电源解决方案很有吸引力,因为它们可以编织到纺织品中,为未来的可穿戴电子产品提供一种便捷的供电方式。然而,它们很难生产出超过几厘米的长度,而且人们认为较长的纤维具有更高的内阻,从而影响电化学性能。在这里,我们表明,这种纤维的内阻与纤维长度呈双曲余切函数关系,随着长度的增加,内阻先减小然后趋于稳定。系统的研究证实了不同纤维电池的这一意想不到的结果是真实的。通过优化的可扩展工业工艺,我们能够生产出数米长的高性能纤维锂离子电池。我们大规模生产的纤维电池的能量密度为 85.69 瓦时/千克(典型值小于 1 瓦时/千克),基于锂钴氧化物/石墨全电池的总重量,包括包装。经过 500 次充放电循环后,其容量保持率达到 90.5%,在 1C 率(与 0.1C 率容量相比)下达到 93%,这与商用电池(如袋式电池)相当。在纤维经过 10 万次弯曲循环后,仍能保持 80%以上的容量。我们展示了通过工业剑杆织机编织成安全且可水洗的纺织品中的纤维锂离子电池可以为手机无线充电,或为集成了纤维传感器和纺织品显示器的健康管理夹克供电。