Department of Mechanical Engineering and ‡Materials Science Programme, Advanced Nanoengineering Materials laboratory, Indian Institute of Technology Kanpur , Kanpur-208016, India.
ACS Appl Mater Interfaces. 2017 Jun 14;9(23):19870-19880. doi: 10.1021/acsami.7b04112. Epub 2017 Jun 5.
Development of printable and flexible energy storage devices is one of the most promising technologies for wearable electronics in textile industry. The present work involves the design of a printable and flexible all-solid-state rechargeable battery for wearable electronics in textile applications. Copper-coated carbon fiber is used to make a poly(ethylene oxide) (PEO)-based polymer nanocomposite for a flexible and conductive current collector layer. Lithium iron phosphate (LiFePO) and titanium dioxide (TiO) are utilized to prepare the cathode and anode layers, respectively, with PEO and carbon black composites. The PEO- and Li salt-based solid composite separator layer is utilized for the solid-state and safe electrolyte. Fabrication of all these layers and assembly of them through coating on fabrics are performed in the open atmosphere without using any complex processing, as PEO prevents the degradation of the materials in the open atmosphere. The performance of the battery is evaluated through charge-discharge and open-circuit voltage analyses. The battery shows an open-circuit voltage of ∼2.67 V and discharge time ∼2000 s. It shows similar performance at different repeated bending angles (0° to 180°) and continuous bending along with long cycle life. The application of the battery is also investigated for printable and wearable textile applications. Therefore, this printable, flexible, easily processable, and nontoxic battery with this performance has great potential to be used in portable and wearable textile electronics.
可打印和灵活的储能设备的发展是纺织行业中可穿戴电子产品最有前途的技术之一。本工作涉及用于纺织应用中可穿戴电子设备的可打印和灵活的全固态可充电电池的设计。使用镀铜碳纤维来制造基于聚环氧乙烷(PEO)的聚合物纳米复合材料,用作柔性和导电集流器层。使用磷酸铁锂(LiFePO)和二氧化钛(TiO)分别制备阴极和阳极层,它们分别与 PEO 和炭黑复合材料一起使用。PEO 和锂盐基固态复合隔离层用作固态和安全电解质。所有这些层的制造以及通过在织物上涂层进行的组装都是在开放的大气环境中进行的,而无需使用任何复杂的处理工艺,因为 PEO 可防止材料在开放大气中的降解。通过充放电和开路电压分析评估电池的性能。电池的开路电压约为 2.67V,放电时间约为 2000s。在不同的重复弯曲角度(0°至 180°)和连续弯曲以及长循环寿命下,它表现出相似的性能。还研究了电池在可打印和可穿戴纺织品应用中的应用。因此,这种具有这种性能的可打印、灵活、易于加工和无毒的电池具有很大的潜力可用于便携式和可穿戴的纺织电子产品。