Zhao Zhe, Yuan Zhongke, Fang Zhengsong, Jian Junhua, Li Jing, Yang Meijia, Mo Chunshao, Zhang You, Hu Xuanhe, Li Ping, Wang Shuangyin, Hong Wei, Zheng Zhikun, Ouyang Gangfeng, Chen Xudong, Yu Dingshan
Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education Key Laboratory of High Performance Polymer-Based Composites of Guangdong Province School of Chemistry Sun Yat-Sen University Guangzhou 510275 China.
College of Chemistry and Chemical Engineering Hunan University Changsha 410082 China.
Adv Sci (Weinh). 2018 Oct 18;5(12):1800760. doi: 10.1002/advs.201800760. eCollection 2018 Dec.
An in situ strategy to simultaneously boost oxygen reduction and oxygen evolution (ORR/OER) activities of commercial carbon textiles is reported and the direct use of such ubiquitous raw material as low-cost, efficient, robust, self-supporting, and bifunctional air electrodes in rechargeable Zn-air batteries is demonstrated. This strategy not only furnishes carbon textiles with a large surface area and hierarchical meso-microporosity, but also enables efficient dual-doping of N and S into carbon skeletons while retaining high conductivity and stable monolithic structures. Thus, although original carbon textile has rather poor catalytic activity, the activated textiles without loading other active materials yield effective ORR/OER bifunctionality and stability with a much lower reversible overpotential (0.87 V) than those of Pt/C (1.10 V) and RuO (1.02 V) and many reported metal-free bifunctional catalysts. Importantly, they can concurrently function as current collectors and as ORR/OER catalysts for rechargeable aqueous and flexible solid-state Zn-air batteries, showing excellent cell performance, long lifetime, and high flexibility.
报道了一种原位策略,可同时提高商用碳织物的氧还原和析氧(ORR/OER)活性,并展示了将这种无处不在的原材料直接用作可充电锌空气电池中低成本、高效、耐用、自支撑且具有双功能的空气电极。该策略不仅为碳织物提供了大表面积和分级的中微孔结构,还能在保持高导电性和稳定整体结构的同时,实现氮和硫向碳骨架的高效双掺杂。因此,尽管原始碳织物的催化活性相当低,但未负载其他活性材料的活化织物却能产生有效的ORR/OER双功能性和稳定性,其可逆过电位(0.87 V)远低于Pt/C(1.10 V)和RuO(1.02 V)以及许多已报道的无金属双功能催化剂。重要的是,它们可同时作为可充电水性和柔性固态锌空气电池的集流体和ORR/OER催化剂,展现出优异的电池性能、长寿命和高柔韧性。