Magnesium incorporation activates perovskite cobaltites toward efficient and stable electrocatalytic oxygen evolution

Siyu Pan , Zilin Ma , Wenying Yang , Biaokui Dongyang , Huizhi Yang , Shimin Lai , Feifei Dong , Xixian Yang , Zhan Lin
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Abstract

Cobalt-rich perovskite oxides play a paramount role in catalyzing oxygen evolution reaction (OER) on account of their acceptable intrinsic activity but are still challenging due to the high costs and undesired stability. In response to the defects, herein, the Mg-incorporated perovskite cobaltite SrCo0.6Fe0.3Mg0.1O3δ (SCFM-0.1) is proposed as a novel earth-abundant and durable OER electrocatalyst. A well-consolidated cubic-symmetry structure and more active oxygen intermediates are enabled upon Mg substitution. Hence, the optimized SCFM-0.1 perovskite oxide achieves prominent OER electrocatalytic performance, that is, a low overpotential of only 320 mV at 10 mA cm2, a small Tafel slope of 65 mV dec1, as well as an outstanding durability within 20 h, substantially outperforming that of the pristine SrCo0.7Fe0.3O3δ and benchmark Ba0.5Sr0.5Co0.8Fe0.2O3δ and IrO2 catalysts. The strong pH-dependent behavior associated with lattice oxygen activation mechanism for SCFM-0.1 catalyst is also confirmed. This work paves a unique avenue to develop cost-effective and robust perovskite cobaltites for efficient OER electrocatalysis.

Abstract Image

镁的掺入激活钙钛矿钴酸盐,实现高效稳定的电催化析氧
富钴钙钛矿氧化物在催化析氧反应(OER)中发挥着至关重要的作用,因为它们具有可接受的内在活性,但由于高成本和不理想的稳定性,仍然具有挑战性。针对这些缺陷,本文提出了镁掺杂的钙钛矿钴酸盐SrCo0.6Fe0.3Mg0.1O3−δ (SCFM-0.1)作为一种新型的地球富集且耐用的OER电催化剂。在Mg取代后,形成了良好的立方对称结构和更多的活性氧中间体。因此,优化后的SCFM-0.1钙钛矿氧化物具有突出的OER电催化性能,即在10 mA cm−2时过电位仅为320 mV, Tafel斜率较小,为65 mV dec−1,并且在20 h内具有出色的耐久性,大大优于原始SrCo0.7Fe0.3O3−δ和基准ba0.5 sr0.5 co0.8 fe0.3 2o3−δ和IrO2催化剂。此外,还证实了SCFM-0.1催化剂的晶格氧活化机制与强ph依赖性行为有关。这项工作为开发高效OER电催化的具有成本效益和坚固性的钙钛矿钴酸盐铺平了一条独特的途径。
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来源期刊
材料导报:能源(英文)
材料导报:能源(英文) Renewable Energy, Sustainability and the Environment, Nanotechnology
CiteScore
13.00
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