Dai Yawen, Yu Jie, Zhang Zhenbao, Zhai Shuo, Cheng Chun, Zhao Siyuan, Tan Peng, Shao Zongping, Ni Meng
Department of Building and Real Estate, Research Institute for Sustainable Urban Development (RISUD) and Research Institute for Smart Energy (RISE), The Hong Kong Polytechnic University, Hung Hom, Kowloon, 999077 Hong Kong, P. R. China.
Department of Thermal Science and Energy Engineering, University of Science and Technology of China, Hefei 230026 Anhui, P. R. China.
ACS Appl Mater Interfaces. 2021 Dec 29;13(51):61098-61106. doi: 10.1021/acsami.1c18081. Epub 2021 Dec 15.
LaSrMnCoO (LSMC) perovskite anchored with RuO (LSMC-Ru) is fabricated as a new bifunctional electrocatalyst, with low dosage (2.43 wt %) and high utilization of noble metal Ru. The LSMC-Ru exhibits outstanding bifunctional activity with a low potential gap of 0.72 V between the oxygen evolution reaction (OER) potential at 10 mA cm and the oxygen reduction reaction (ORR) half-wave potential. The strong electronic interaction between RuO and LSMC is confirmed by both experiments and theoretical calculations. Consequently, the electron-rich Mn centers promote ORR, while the electron-deficient Ru centers facilitate OER. A Zn-air battery using the LSMC-Ru air electrode delivers a peak power density of 159 mW cm and a low charge-discharge potential gap of 0.58 V at 2 mA cm. The high round-trip energy efficiency of 60.6% is retained after 300 cycles. This strategy of anchoring a low dosage noble metal catalyst to perovskite can be extended to other systems of noble metal-non-noble metal composite electrocatalysts to achieve both competitive performance and low cost.
负载RuO的LaSrMnCoO(LSMC-Ru)钙钛矿被制备成一种新型双功能电催化剂,其贵金属Ru用量低(2.43 wt%)且利用率高。LSMC-Ru表现出优异的双功能活性,在10 mA cm的析氧反应(OER)电位与氧还原反应(ORR)半波电位之间的电位差低至0.72 V。实验和理论计算均证实了RuO与LSMC之间存在强电子相互作用。因此,富电子的Mn中心促进ORR,而缺电子的Ru中心促进OER。使用LSMC-Ru空气电极的锌空气电池在2 mA cm下的峰值功率密度为159 mW cm,充放电电位差低至0.58 V。经过300次循环后,仍保持60.6%的高往返能量效率。这种将低剂量贵金属催化剂负载到钙钛矿上的策略可扩展到其他贵金属-非贵金属复合电催化剂体系,以实现兼具竞争力的性能和低成本。