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Flexible Lithium-Ion Batteries with High Areal Capacity Enabled by Smart Conductive Textiles

机译:智能导电纺织品的柔性锂离子电池具有高面积容量

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摘要

Increasing demand for flexible devices in various applications, such as smart watches, healthcare, and military applications, requires the development of flexible energy-storage devices, such as lithium-ion batteries (LIBs) with high flexibility and capacity. However, it is difficult to ensure high capacity and high flexibility simultaneously through conventional electrode preparation processes. Herein, smart conductive textiles are employed as current collectors for flexible LIBs owing to their inherent flexibility, fibrous network, rough surface for better adhesion, and electrical conductivity. Conductivity and flexibility are further enhanced by nanosizing lithium titanate oxide (LTO) and lithium iron phosphate (LFP) active materials, and hybridizing them with a flexible 2D graphene template. The resulting LTO/LFP full cells demonstrate high areal capacity and flexibility with tolerance to mechanical fatigue. The battery achieves a capacity of 1.2 mA h cm~(-2) while showing excellent flexibility. The cells demonstrate stable open circuit voltage retention under repeated flexing for 1000 times at a bending radius of 10 mm. The discharge capacity of the unflexed battery is retained in cells subjected to bending for 100 times at bending radii of 30, 20, and 10 mm, respectively, confirming that the suggested electrode configuration successfully prevents structural damage (delamination or cracking) upon repeated deformation.
机译:对各种应用中灵活设备的需求越来越多,例如智能手表,医疗保健和军事应用,需要开发灵活的能量存储装置,例如具有高柔韧性和容量的锂离子电池(LIBS)。然而,难以通过常规电极制备方法同时确保高容量和高柔韧性。这里,由于其固有的灵活性,纤维网络,粗糙表面,用于更好地粘附的纤维网络和导电性,所以智能导电纺织品作为柔性LIB的集电器。通过纳米化钛酸锂(LTO)和磷酸铁(LFP)活性材料,并用柔性2D石墨烯模板杂交,进一步增强了电导率和柔韧性。得到的LTO / LFP全细胞表现出高度的面积能力和具有耐受机械疲劳的耐受性。电池达到1.2 ma H cm〜(-2)的容量,同时显示出优异的灵活性。该细胞在重复弯曲的弯曲半径为10mm的重复弯曲下展示稳定的开路电压保持1000次。在弯曲半径为30,20和10mm的弯曲半径以弯曲的情况下,未填充电池的放电容量分别在30,20和10mm的弯曲半径下保留100次,确认建议的电极构造成功地防止了在重复变形时损坏(分层或裂化)。

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