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中空碳纳米球上单个原子钴和铁位点的调制作为可充电锌空气电池的氧电极

Modulation of Single Atomic Co and Fe Sites on Hollow Carbon Nanospheres as Oxygen Electrodes for Rechargeable Zn-Air Batteries.

作者信息

Jose Vishal, Hu Huimin, Edison Eldho, Manalastas William, Ren Hao, Kidkhunthod Pinit, Sreejith Sivaramapanicker, Jayakumar Anjali, Nsanzimana Jean Marie Vianney, Srinivasan Madhavi, Choi Jinho, Lee Jong-Min

机构信息

Energy Research Institute @ NTU, ERI@N, Interdisciplinary Graduate School Nanyang Technological University, 50 Nanyang Drive, Singapore, 637553, Singapore.

School of Chemical and Biomedical Engineering, Nanyang Technological University, 62 Nanyang Drive, Singapore, 637459, Singapore.

出版信息

Small Methods. 2021 Feb;5(2):e2000751. doi: 10.1002/smtd.202000751. Epub 2020 Oct 9.

Abstract

Efficient bifunctional electrocatalysts for oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are required for metal air batteries, to replace costly metals, such as Pt and Ir/Ru based compounds, which are typically used as benchmarks for ORR and OER, respectively. Isolated single atomic sites coordinated with nitrogen on carbon supports (M-N-C) have promising performance for replacement of precious metal catalysts. However, most of monometallic M-N-C catalysts demonstrate unsatisfactory bifunctional performance. Herein, a facile way of preparing bimetallic Fe and Co sites entrapped in nitrogen-doped hollow carbon nanospheres (Fe,Co-SA/CS) is explored, drawing on the unique structure and pore characteristics of Zeolitic imidazole frameworks and molecular size of Ferrocene, an Fe containing species. Fe,Co-SA/CS showed an ORR onset potential and half wave potential of 0.96 and 0.86 V, respectively. For OER, (Fe,Co)-SA/CS attained its anodic current density of 10 mA cm at an overpotential of 360 mV. Interestingly, the oxygen electrode activity (ΔE) for (Fe,Co)-SA/CS and commercial Pt/C-RuO is calculated to be 0.73 V, exhibiting the bifunctional catalytic activity of (Fe,Co)-SA/CS. (Fe,Co)-SA/CS evidenced desirable specific capacity and cyclic stability than Pt/C-RuO2 mixture when utilized as an air cathode in a homemade Zinc-air battery.

摘要

金属空气电池需要高效的双功能电催化剂来进行氧还原反应(ORR)和析氧反应(OER),以替代昂贵的金属,如通常分别用作ORR和OER基准的Pt和Ir/Ru基化合物。碳载体上与氮配位的孤立单原子位点(M-N-C)在替代贵金属催化剂方面具有良好的性能。然而,大多数单金属M-N-C催化剂的双功能性能并不理想。在此,利用沸石咪唑框架的独特结构和孔特征以及含Fe物种二茂铁的分子尺寸,探索了一种制备包裹在氮掺杂空心碳纳米球(Fe,Co-SA/CS)中的双金属Fe和Co位点的简便方法。Fe,Co-SA/CS的ORR起始电位和半波电位分别为0.96和0.86 V。对于OER,(Fe,Co)-SA/CS在360 mV的过电位下达到其10 mA cm的阳极电流密度。有趣的是,(Fe,Co)-SA/CS和商业Pt/C-RuO的氧电极活性(ΔE)经计算为0.73 V,显示出(Fe,Co)-SA/CS的双功能催化活性。当用作自制锌空气电池的空气阴极时,(Fe,Co)-SA/CS比Pt/C-RuO2混合物表现出更理想的比容量和循环稳定性。

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