Wang Wenhai, Geng Jing, Kuai Long, Li Min, Geng Baoyou
College of Chemistry and Materials Science, The Key Laboratory of Functional Molecular Solids, Ministry of Education, Anhui Laboratory of Molecular-Based Materials, Center for Nano Science and Technology, Anhui Normal University, Wuhu, 241000, P. R. China.
Chemistry. 2016 Jul 11;22(29):9909-13. doi: 10.1002/chem.201602078. Epub 2016 Jun 21.
Preparing nonprecious metal catalysts with high activity in the oxygen reduction reaction (ORR) can promote the development of energy conversion devices. Support-free porous Mn2 O3 was synthesized by a facile aerosol-spray-assisted approach (ASAA) and subsequent thermal treatment, and exhibited ORR activity that is comparable to commercial Pt/C The catalyst also exhibits notably higher activity than other Mn-based oxides, such as Mn3 O4 and MnO2 . The rotating ring disk electrode (RRDE) study indicates a typical 4-electron ORR pathway on Mn2 O3 . Furthermore, the porous Mn2 O3 demonstrates considerable stability and a good methanol tolerance in alkaline media. In light of the low cost and high earth abundance of Mn, the highly active Mn2 O3 is a promising candidate to be used as a cathode material in metal-air batteries and alkaline fuel cells.
制备在氧还原反应(ORR)中具有高活性的非贵金属催化剂能够推动能量转换装置的发展。通过简便的气溶胶喷雾辅助方法(ASAA)及后续热处理合成了无载体多孔Mn₂O₃,其表现出与商业Pt/C相当的ORR活性。该催化剂还表现出比其他锰基氧化物(如Mn₃O₄和MnO₂)显著更高的活性。旋转环盘电极(RRDE)研究表明在Mn₂O₃上存在典型的4电子ORR途径。此外,多孔Mn₂O₃在碱性介质中表现出相当的稳定性和良好的甲醇耐受性。鉴于锰的低成本和高地球丰度,高活性的Mn₂O₃是用作金属空气电池和碱性燃料电池阴极材料的有前途的候选物。