Chen Zhengfan, Cheng Weiyi, Cao Kecheng, Jin Meng, Rahali Sarra, Chala Soressa Abera, Ebrahimi Elnaz, Ma Nana, Liu Rongji, Lakshmanan Keseven, Chang Chia-Yu, Cheung Chun-Chi, Luo Haojian, Wang Yongkang, Hwang Bing Joe, Streb Carsten
Department of Chemistry, Johannes Gutenberg University Mainz, Duesbergweg 10-14, 55128, Mainz, Germany.
School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, 453007, China.
Small. 2025 Jan;21(3):e2409161. doi: 10.1002/smll.202409161. Epub 2024 Nov 27.
Efficient and robust electrocatalysts for the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are crucial for fuel cells, metal-air batteries, and other energy technologies. Here, a highly stable, efficient bifunctional OER/ORR electrocatalyst (FeNi-NC@MWCNTs) is reported and demonstrated its integration and robust performance in an aqueous Zinc-air battery (ZAB). The catalyst is based on neighboring iron/nickel sites (FeNiN) which are atomically dispersed on porous nitrogen-doped carbon particles. The particles are wrapped in electrically conductive multi-walled carbon nanotubes for enhanced electrical conductivity. Electrocatalytic analyses show high OER and ORR performance (OER/ORR voltage difference = 0.69 V). Catalyst integration in a ZAB results in excellent performance metrics, including an open circuit voltage of 1.44 V, a specific capacity of 782 mAh g (at j = 15 mA cm), a peak power density of 218 mW cm (at j = 260 mA cm) and long-term durability over 600 charge/discharge cycles. Combined experimental and theoretical (density functional theory) analyses provide an in-depth understanding of the physical and electronic structure of the catalyst and the role of the FeNi dual atom reaction site. The study therefore provides critical insights into the structure and reactivity of high-performance bifunctional OER/ORR catalysts based on atomically dispersed non-critical metals.
用于氧还原反应(ORR)和析氧反应(OER)的高效且稳健的电催化剂对于燃料电池、金属空气电池及其他能源技术至关重要。在此,报道了一种高度稳定、高效的双功能OER/ORR电催化剂(FeNi-NC@MWCNTs),并展示了其在水系锌空气电池(ZAB)中的集成及稳健性能。该催化剂基于原子分散在多孔氮掺杂碳颗粒上的相邻铁/镍位点(FeNiN)。这些颗粒被包裹在导电的多壁碳纳米管中以增强导电性。电催化分析表明该催化剂具有高OER和ORR性能(OER/ORR电压差 = 0.69 V)。将该催化剂集成到ZAB中可实现优异的性能指标,包括开路电压为1.44 V、比容量为782 mAh g(在j = 15 mA cm时)、峰值功率密度为218 mW cm(在j = 260 mA cm时)以及超过600次充放电循环的长期耐久性。结合实验和理论(密度泛函理论)分析,可深入了解该催化剂的物理和电子结构以及FeNi双原子反应位点的作用。因此,该研究为基于原子分散的非关键金属的高性能双功能OER/ORR催化剂的结构和反应活性提供了关键见解。