Wang Donghong, Li Hongfei, Liu Zhuoxin, Tang Zijie, Liang Guojin, Mo Funian, Yang Qi, Ma Longtao, Zhi Chunyi
Department of Materials Science and Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, 999077, China.
Chengdu Research Institute, City University of Hong Kong, Chengdu, 610000, P. R. China.
Small. 2018 Dec;14(51):e1803978. doi: 10.1002/smll.201803978. Epub 2018 Nov 16.
There is a growing demand for flexible and wearable energy devices. How to enhance their tolerance to various mechanical stresses is a key issue. Bending, stretching, or twisting of flexible batteries has been widely researched. However, shear force is inevitably applied on the batteries during stretching, bending, and twisting. Unfortunately, thus far, research on analyzing shear resistance of solid batteries or even enhancing the shear tolerance has never been reported. Herein, a sewable Zn-MnO battery based on a nanofibrillated cellulose (NFC)/ployacrylamide (PAM) hydrogel, electrodeposited Zn nanoplates anode, and carbon nanotube (CNT)/α-MnO cathode is reported. The designed NFC/PAM hydrogel exhibits a relatively high mechanical strength with a large stretchability; the preformed NFC bone network stabilizes the large pores as channels for electrolyte diffusion. Furthermore, the effect of sewing on enhancing the shear resistance of the solid batteries is analyzed. The sewed Zn-MnO battery retains 88.5% of its capacity after 120 stitches, and withstands a large shear force of 43 N. The sewable and safe Zn-MnO is also able to be designed into a skirt and put on a toy as an energy source to power a red light emitting diode.
对柔性可穿戴能源设备的需求日益增长。如何提高它们对各种机械应力的耐受性是一个关键问题。柔性电池的弯曲、拉伸或扭转已得到广泛研究。然而,在拉伸、弯曲和扭转过程中,电池不可避免地会受到剪切力。遗憾的是,迄今为止,尚未有关于分析固态电池抗剪切性甚至提高剪切耐受性的研究报道。在此,报道了一种基于纳米纤化纤维素(NFC)/聚丙烯酰胺(PAM)水凝胶、电沉积锌纳米板阳极和碳纳米管(CNT)/α-MnO阴极的可缝制锌-二氧化锰电池。所设计的NFC/PAM水凝胶具有较高的机械强度和较大的拉伸性;预先形成的NFC骨架网络稳定了作为电解质扩散通道的大孔。此外,还分析了缝制对提高固态电池抗剪切性的影响。缝制的锌-二氧化锰电池在缝120针后仍保留其容量的88.5%,并能承受43 N的大剪切力。这种可缝制且安全的锌-二氧化锰电池还能够被设计成一条裙子,并作为能源安装在玩具上,为红色发光二极管供电。