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基于卡拉胶增强凝胶的用于储能、能量收集和自供电传感的极端条件耐受可拉伸柔性超级电容器和摩擦纳米发电机。

Extreme condition-tolerant stretchable flexible supercapacitor and triboelectric nanogenerator based on carrageenan-enhanced gel for energy storage, energy collection and self-powered sensing.

机构信息

School of Materials Science and Engineering, Henan Polytechnic University, Jiaozuo 454003, PR China.

School of Materials Science and Engineering, Henan Polytechnic University, Jiaozuo 454003, PR China; Aeolus Tyre Co., Ltd., Jiaozuo 454003, PR China.

出版信息

Int J Biol Macromol. 2024 Jul;273(Pt 1):132994. doi: 10.1016/j.ijbiomac.2024.132994. Epub 2024 Jun 9.

Abstract

As flexible electronics devices for energy storage, mechanical energy collection and self-powered sensing, stretchable flexible supercapacitor and triboelectric nanogenerator (TENG) have attracted extensive attention. However, it is difficult to satisfy the requirements of high safety and resistance to extreme conditions. Dual roles of mechanical and electrical enhancement of inorganic salt are put forward, and a carrageenan (CG) enhanced poly (N-hydroxyethyl acrylamide)/CG/lithium chloride/glycerol (PCLG) conductive gel is prepared by designing hydrogen bonding self-crosslinking and chain entanglement. A high concentration and rapid deposition strategy is proposed to prepare a PCLG gel-based stretchable flexible all-in-one supercapacitor for energy storage, and a single electrode PCLG gel-based TENG is designed for mechanical energy collection, self-powered strain and tactile sensing. The supercapacitor has high capacitance, excellent cycling stability. The TENG possesses efficient energy harvesting with high and stable output voltage and power density, and sensitive and stable self-powered strain and tactile sensing without external power supply. Even under extreme conditions such as low temperatures, self-healing after damage, prolonged placement, deformation, post-deformation, multiple continuous work, pinprick and burning, the supercapacitor and TENG still have excellent properties. Therefore, we provide novel ideas to design flexible supercapacitor and TENG used under extreme conditions for future wearable electronics.

摘要

作为储能、机械能收集和自供电传感的柔性电子器件,可拉伸的柔性超级电容器和摩擦纳米发电机(TENG)引起了广泛的关注。然而,要满足高安全性和耐极端条件的要求却很困难。提出了无机盐的机械和电气增强的双重作用,并通过设计氢键自交联和链缠结,制备了卡拉胶(CG)增强的聚(N-羟乙基丙烯酰胺)/CG/氯化锂/甘油(PCLG)导电凝胶。提出了一种高浓度和快速沉积策略,用于制备基于 PCLG 凝胶的可拉伸柔性一体式超级电容器进行储能,以及设计了基于单个电极的 PCLG 凝胶基 TENG 用于机械能收集、自供电应变和触觉传感。该超级电容器具有高电容、优异的循环稳定性。TENG 具有高效的能量收集,具有高且稳定的输出电压和功率密度,以及灵敏且稳定的自供电应变和触觉传感,无需外部电源。即使在低温等极端条件下,自修复后损伤、长时间放置、变形、变形后、多次连续工作、针刺和燃烧,超级电容器和 TENG 仍然具有优异的性能。因此,我们为设计用于极端条件下的柔性超级电容器和 TENG 提供了新的思路,用于未来的可穿戴电子设备。

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