Gu Fan, Guo Wengai, Yuan Yifei, Deng Ya-Ping, Jin Huile, Wang Jichang, Chen Zhongwei, Pan Shuang, Chen Yihuang, Wang Shun
College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou, Zhejiang, 325035, China.
Department of Chemical Engineering, Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, ON, N2L 3G1, Canada.
Adv Mater. 2024 May;36(19):e2313096. doi: 10.1002/adma.202313096. Epub 2024 Feb 11.
Despite the increasing effort in advancing oxygen electrocatalysts for zinc-air batteries (ZABs), the performance development gradually reaches a plateau via only ameliorating the electrocatalyst materials. Herein, a new class of external field-responsive electrocatalyst comprising NiMnFeO stably dispersed on N-doped Ketjenblack (NiMnFeO/N-KB) is developed via polymer-assisted strategy for practical ZABs. Briefly, the activity indicator ΔE is significantly decreased to 0.618 V upon photothermal assistance, far exceeding most reported electrocatalysts (generally >0.680 V). As a result, the photothermal electrocatalyst possesses comprehensive merits of excellent power density (319 mW cm), ultralong lifespan (5163 cycles at 25 mA cm), and outstanding rate performance (100 mA cm) for liquid ZABs, and superb temperature and deformation adaptability for flexible ZABs. Such improvement is attributed to the photothermal-heating-enabled synergy of promoted electrical conductivity, reactant-molecule motion, active area, and surface reconstruction, as revealed by operando Raman and simulation. The findings open vast possibilities toward more-energy-efficient energy applications.
尽管在推进锌空气电池(ZABs)的氧电催化剂方面付出了越来越多的努力,但仅通过改进电催化剂材料,其性能发展逐渐达到了一个平台期。在此,通过聚合物辅助策略开发了一种新型的外部场响应电催化剂,该催化剂由稳定分散在氮掺杂科琴黑(NiMnFeO/N-KB)上的NiMnFeO组成,用于实际的锌空气电池。简而言之,在光热辅助下,活性指标ΔE显著降低至0.618 V,远远超过大多数已报道的电催化剂(通常>0.680 V)。因此,这种光热电催化剂具有诸多综合优点,对于液体锌空气电池具有出色的功率密度(319 mW cm)、超长寿命(在25 mA cm下循环5163次)和优异的倍率性能(100 mA cm),对于柔性锌空气电池具有卓越的温度和变形适应性。如通过原位拉曼光谱和模拟所揭示的,这种改进归因于光热加热实现的促进电导率、反应物分子运动、活性面积和表面重构的协同作用。这些发现为更节能的能源应用开辟了广阔的可能性。