Fang Weiguang, Bai Zhiman, Yu Xinxin, Zhang Wen, Wu Mingzai
School of Physics and Materials Science, Anhui University, Hefei, 230601, China.
Nanoscale. 2020 Jun 4;12(21):11746-11758. doi: 10.1039/d0nr02376k.
The development of flexible all-solid-state rechargeable Zn-air batteries (FS-ZABs) for wearable applications faces challenges from the balance between performance and flexibility of the battery; efficient cathode catalyst and reasonable electrode construction design are key factors. Herein, a low-cost pollen derived N,S co-doped porous carbon decorated with Co9S8/Fe3S4 nanoparticle hybrids (Co-Fe-S@NSRPC) has been synthesized. Owing to the active Co9S8/Fe3S4 nanoparticles, N,S co-doping, and large specific area of the pollen derived porous carbon matrix, the Co-Fe-S@NSRPC composite exhibits an excellent bifunctional catalytic activity with a small potential gap (ΔE = 0.80 V) between the half-wave potential for the ORR (0.80 V) and the potential at 10 mA cm-2 for the OER (1.60 V), and endows a liquid Zn-air battery with a high power density of 138 mW cm-2, a larger specific capacity of 891 mA h g-1 and a stable rechargeability of up to 331 cycles. Based on the Co-Fe-S@NSRPC cathode catalyst, a 2D coplanar FS-ZAB has been fabricated with specially designed parallel narrow strip electrodes alternately arrayed on a polyacrylamide polyacrylic acid copolymer hydrogel solid electrolyte. The presented FS-ZAB exhibits excellent battery performance with high open-circuit-voltage (1.415 V), competitive peak power density (78 mW cm-2), large specific capacity (785 mA h g-1) and stable rechargeability (150 cycles), offers robust flexibility to maintain stable charge/discharge capacity under different bending deformations, and provides convenient coplanar integrability to realize parallel or series connection of multiple cells in a relatively small area.
用于可穿戴应用的柔性全固态可充电锌空气电池(FS-ZABs)的发展面临着电池性能与柔韧性之间平衡的挑战;高效的阴极催化剂和合理的电极结构设计是关键因素。在此,合成了一种低成本的、由花粉衍生的、用Co9S8/Fe3S4纳米颗粒杂化物修饰的N、S共掺杂多孔碳(Co-Fe-S@NSRPC)。由于活性Co9S8/Fe3S4纳米颗粒、N、S共掺杂以及花粉衍生多孔碳基质的大比表面积,Co-Fe-S@NSRPC复合材料表现出优异的双功能催化活性,其氧还原反应(ORR)的半波电位(0.80 V)与析氧反应(OER)在10 mA cm-2时的电位(1.60 V)之间的电位差较小(ΔE = 0.80 V),并赋予液体锌空气电池138 mW cm-2的高功率密度、891 mA h g-1的较大比容量以及高达331次循环的稳定可充电性。基于Co-Fe-S@NSRPC阴极催化剂,在聚丙烯酰胺聚丙烯酸共聚物水凝胶固体电解质上交替排列有专门设计的平行窄条电极,制备了二维共面FS-ZAB。所展示的FS-ZAB表现出优异的电池性能,具有高开路电压(1.415 V)、有竞争力的峰值功率密度(78 mW cm-2)、大比容量(785 mA h g-1)和稳定的可充电性(150次循环),具有强大的柔韧性,可在不同弯曲变形下保持稳定的充放电容量,并提供方便的共面集成性,以在相对较小的面积内实现多个电池的并联或串联连接。