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四价铈对氧化铜催化剂析氧活性的促进作用。

The promoting effect of tetravalent cerium on the oxygen evolution activity of copper oxide catalysts.

作者信息

Chen Zhu, Kronawitter Coleman X, Yang Xiaofang, Yeh Yao-Wen, Yao Nan, Koel Bruce E

机构信息

Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ 08540, USA.

出版信息

Phys Chem Chem Phys. 2017 Dec 6;19(47):31545-31552. doi: 10.1039/c7cp05248k.

Abstract

A new catalyst is presented for the oxygen evolution reaction (OER) based on cerium-modified copper oxide (CuO) prepared using a facile electrodeposition procedure. Incorporation of Ce into CuO leads to greatly improved OER activity, which reached an optimal value at a surface concentration of 6.9 at% Ce. Specifically, the OER current density at 400 mV overpotential for the most active Ce-modified CuO catalyst (6.9 at% Ce) was 3.3 times greater compared to the pure CuO. Coincident with the improved OER activity, Ce incorporation also leads to significant structural changes that manifested in increasing degrees of disorder. A further increase in the Ce concentration led to a decrease in the OER performance which can be attributed to the formation of a segregated CeO phase. A strong correlation was observed between the OER performance and tetravalent Ce (Ce) ion concentration, up to a concentration corresponding to CeO phase segregation. No particular trend was observed for the OER activity of these Ce-modified CuO catalysts with respect to the surface concentration of Cu ions, surface oxygen species or catalyst structure. The stability of these CuO catalysts at 5 mA cm was also improved with Ce incorporation, and the overpotential required to sustain this current density is much lower than that of pure CuO. Overall, this study provides new insights regarding the promoting effect of tetravalent Ce ions on the OER activity of CuO-based OER catalysts in alkaline electrolytes.

摘要

本文介绍了一种基于铈改性氧化铜(CuO)的新型析氧反应(OER)催化剂,该催化剂采用简便的电沉积方法制备。将铈掺入CuO中可大大提高OER活性,在铈表面浓度为6.9 at%时达到最佳值。具体而言,最活跃的铈改性CuO催化剂(6.9 at% Ce)在400 mV过电位下的OER电流密度比纯CuO大3.3倍。与OER活性的提高相一致,铈的掺入还导致了显著的结构变化,表现为无序程度的增加。铈浓度的进一步增加导致OER性能下降,这可归因于偏析CeO相的形成。在OER性能与四价铈(Ce)离子浓度之间观察到强相关性,直至对应于CeO相偏析的浓度。对于这些铈改性CuO催化剂的OER活性,在铜离子表面浓度、表面氧物种或催化剂结构方面未观察到特定趋势。铈的掺入还提高了这些CuO催化剂在5 mA cm下的稳定性,维持该电流密度所需的过电位远低于纯CuO。总体而言,本研究提供了关于四价铈离子对碱性电解质中基于CuO的OER催化剂的OER活性促进作用的新见解。

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