Hayashi Toru, Bonnet-Mercier Nadège, Yamaguchi Akira, Suetsugu Kazumasa, Nakamura Ryuhei
Department of Applied Chemistry, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Biofunctional Catalyst Research Team, RIKEN Center for Sustainable Resource Science (CSRS), 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
R Soc Open Sci. 2019 May 22;6(5):190122. doi: 10.1098/rsos.190122. eCollection 2019 May.
The performance of four polymorphs of manganese (Mn) dioxides as the catalyst for the oxygen evolution reaction (OER) in proton exchange membrane (PEM) electrolysers was examined. The comparison of the activity between Mn oxides/carbon (Mn/C), iridium oxide/carbon (Ir/C) and platinum/carbon (Pt/C) under the same condition in PEM electrolysers showed that the γ-MnO/C exhibited a voltage efficiency for water electrolysis comparable to the case with Pt/C, while lower than the case with the benchmark Ir/C OER catalyst. The rapid decrease in the voltage efficiency was observed for a PEM electrolyser with the Mn/C, as indicated by the voltage shift from 1.7 to 1.9 V under the galvanostatic condition. The rapid deactivation was also observed when Pt/C was used, indicating that the instability of PEM electrolysis with Mn/C is probably due to the oxidative decomposition of carbon supports. The OER activity of the four types of Mn oxides was also evaluated at acidic pH in a three-electrode system. It was found that the OER activity trends of the Mn oxides evaluated in an acidic aqueous electrolyte were distinct from those in PEM electrolysers, demonstrating the importance of the evaluation of OER catalysts in a real device condition for future development of noble-metal-free PEM electrolysers.
研究了四种二氧化锰(Mn)多晶型物作为质子交换膜(PEM)电解槽中析氧反应(OER)催化剂的性能。在PEM电解槽相同条件下,对MnO/C、氧化铱/C(Ir/C)和铂/C(Pt/C)的活性进行比较,结果表明,γ-MnO/C在水电解中的电压效率与Pt/C相当,但低于基准Ir/C OER催化剂。如恒电流条件下电压从1.7 V移至1.9 V所示,使用Mn/C的PEM电解槽电压效率迅速下降。使用Pt/C时也观察到快速失活,这表明Mn/C的PEM电解不稳定性可能是由于碳载体的氧化分解。还在三电极系统中评估了四种类型MnO在酸性pH下的OER活性。发现在酸性水电解质中评估的MnO的OER活性趋势与PEM电解槽中的不同,这表明在实际装置条件下评估OER催化剂对于未来无贵金属PEM电解槽的开发很重要。