Zhang Yidan, Guo Youmin, Liu Tao, Feng Fuxu, Wang Chunchang, Hu Haibo, Wu Mingzai, Ni Meng, Shao Zongping
School of Physics and Materials Science, Anhui University, Hefei, China.
Department of Building and Real Estate, The Hong Kong Polytechnic University, Hong Kong, China.
Front Chem. 2019 Jul 23;7:524. doi: 10.3389/fchem.2019.00524. eCollection 2019.
Perovskite oxides are promising electrocatalysts toward oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) due to their abundance and high intrinsic catalytic activity. Here we introduce Ag into SmSrCoO (SSC) to form a Ag-SSC catalyst by ultrasonication and apply it as the air electrode for a Zn-air battery. It finds that the introduction of Ag into SSC can transform the Ag-SSC into a good bifunctional electrocatalyst toward ORR as well as OER. For instance, a more active half-wave potential with a value of 0.76 V for ORR is obtained at 1,600 rpm, while the OER overpotential is 0.43 V at I = 10 mA cm. Further characterization demonstrates that the improved catalyst activity of the Ag-SSC can be assigned to the synergistic effect generated between the Ag and SSC phases. The Zn-air battery with the Ag-SSC as an electrode not only gives a same discharge-charge voltage gap (1.33 V) with that of commercial Pt/C (1.33 V) but also presents an equivalent current efficiency (45.7% for Ag-SSC and 45.3% for Pt/C) at 10 mA cm. Moreover, the stability for 110 cycles is better. This result indicates that the Ag-SSC catalyst shows promise for use as a bifunctional electrocatalyst toward OER and ORR.
钙钛矿氧化物因其丰富性和高本征催化活性而有望成为氧还原反应(ORR)和析氧反应(OER)的电催化剂。在此,我们通过超声处理将银引入SmSrCoO(SSC)中以形成Ag-SSC催化剂,并将其用作锌空气电池的空气电极。研究发现,将银引入SSC可使Ag-SSC转变为一种对ORR和OER均具有良好性能的双功能电催化剂。例如,在1600 rpm转速下,ORR的半波电位为0.76 V,活性更高,而在I = 10 mA cm时,OER过电位为0.43 V。进一步表征表明,Ag-SSC催化剂活性的提高可归因于Ag相和SSC相之间产生的协同效应。以Ag-SSC为电极的锌空气电池不仅具有与商业Pt/C相同的充放电电压间隙(1.33 V),而且在10 mA cm时具有相当的电流效率(Ag-SSC为45.7%,Pt/C为45.3%)。此外,其110次循环的稳定性更好。这一结果表明,Ag-SSC催化剂有望用作OER和ORR的双功能电催化剂。