He Yu, Xi Zhiwei, Xu Chunli
Key Laboratory of Applied Surface and Colloid Chemistry, Shaanxi Normal University, Ministry of Education, Xi'an 710119, People's Republic of China.
School of Chemistry and Chemical Engineering, Shaanxi Normal University, Chang'an West Street 620, Xi'an 710119, People's Republic of China.
Nanotechnology. 2022 Sep 5;33(47). doi: 10.1088/1361-6528/ac85c4.
Simple and green preparation of highly-performed electrocatalysts for reaction both at cathode (oxygen reduction reaction (ORR)) and anode (oxygen evolution reaction (OER)) is crucial for boosting the application of meta-air battery. CoFe alloy and nitrogen doped carbon (CoFe-NC) material was prepared by a one-step carbonization procedure to construct a highly efficient electrocatalysis in this work. CoFe-NC displays a three-dimensional (3D) flower-like morphology composed of ordered stacked 2D nanosheets, which is entangled by 1D carbon nanotubes (CNTs). Its structure and electrocatalytic performance are compared with that of nitrogen doped carbon materials obtained from 2D zeolitic-imidazolate frameworks (ZIF) with no metal or single metal, as well as 3D ZIF with bimetal. Benefiting from the multi-dimensional structure of bimetal nanoparticles, 1D CNTs, 2D nanosheets, and 3D flowers, as well as the abundant active sites of Co/Fe-Nand pyridine nitrogen, CoFe-NC displays a high half-wave potential of 0.896 V for ORR and low overpotential of 370 mV at 10 mA cmfor OER. Furthermore, compared with the primary and rechargeable Zn-air batteries fabricated with commercial Pt/C-RuOcatalysts, the CoFe-NC catalysts assembled Zn-air batteries show a higher specific capacity (812.2 mAh g), open circuit potential (1.59 V), power density (183.4 mW cm), and stability. Hence, a facile and environmental-friendly strategy is provided for rational design and synthesis of bifunctional electrocatalysts for zinc-air batteries.
简单且绿色地制备用于阴极(氧还原反应(ORR))和阳极(析氧反应(OER))反应的高性能电催化剂对于推动金属空气电池的应用至关重要。在这项工作中,通过一步碳化程序制备了CoFe合金和氮掺杂碳(CoFe-NC)材料,以构建高效的电催化。CoFe-NC呈现出由有序堆叠的二维纳米片组成的三维(3D)花状形态,这些纳米片被一维碳纳米管(CNT)缠绕。将其结构和电催化性能与从无金属或单金属的二维沸石咪唑框架(ZIF)以及双金属的三维ZIF获得的氮掺杂碳材料进行了比较。受益于双金属纳米颗粒、一维碳纳米管、二维纳米片和三维花的多维结构,以及Co/Fe-N和吡啶氮的丰富活性位点,CoFe-NC对于ORR显示出0.896 V的高半波电位,对于OER在10 mA cm时显示出370 mV的低过电位。此外,与用商业Pt/C-RuO催化剂制造的一次和可充电锌空气电池相比,组装有CoFe-NC催化剂的锌空气电池显示出更高的比容量(812.2 mAh g)、开路电位(1.59 V)、功率密度(183.4 mW cm)和稳定性。因此,为合理设计和合成用于锌空气电池的双功能电催化剂提供了一种简便且环保的策略。