Lai Wei-Hong, Zhang Li-Fu, Hua Wei-Bo, Indris Sylvio, Yan Zi-Chao, Hu Zhe, Zhang Binwei, Liu Yani, Wang Li, Liu Min, Liu Rong, Wang Yun-Xiao, Wang Jia-Zhao, Hu Zhenpeng, Liu Hua-Kun, Chou Shu-Lei, Dou Shi-Xue
Institute for Superconducting & Electronic Materials, University of Wollongong, Innovation Campus, Wollongong, NSW, 2500, Australia.
School of Physics, Nankai University, Tianjin, 300071, China.
Angew Chem Int Ed Engl. 2019 Aug 19;58(34):11868-11873. doi: 10.1002/anie.201904614. Epub 2019 Jul 10.
Both the hydrogen evolution reaction (HER) and the oxygen evolution reaction (OER) are crucial to water splitting, but require alternative active sites. Now, a general π-electron-assisted strategy to anchor single-atom sites (M=Ir, Pt, Ru, Pd, Fe, Ni) on a heterogeneous support is reported. The M atoms can simultaneously anchor on two distinct domains of the hybrid support, four-fold N/C atoms (M@NC), and centers of Co octahedra (M@Co), which are expected to serve as bifunctional electrocatalysts towards the HER and the OER. The Ir catalyst exhibits the best water-splitting performance, showing a low applied potential of 1.603 V to achieve 10 mA cm in 1.0 m KOH solution with cycling over 5 h. DFT calculations indicate that the Ir@Co (Ir) sites can accelerate the OER, while the Ir@NC sites are responsible for the enhanced HER, clarifying the unprecedented performance of this bifunctional catalyst towards full water splitting.
析氢反应(HER)和析氧反应(OER)对于水分解都至关重要,但都需要不同的活性位点。现在,报道了一种将单原子位点(M = Ir、Pt、Ru、Pd、Fe、Ni)锚定在异质载体上的通用π电子辅助策略。M原子可以同时锚定在混合载体的两个不同区域,四重N/C原子(M@NC)和Co八面体中心(M@Co),预计它们将作为HER和OER的双功能电催化剂。Ir催化剂表现出最佳的水分解性能,在1.0 m KOH溶液中循环超过5小时,实现10 mA cm时的低施加电位为1.603 V。密度泛函理论计算表明,Ir@Co(Ir)位点可以加速OER,而Ir@NC位点则负责增强HER,阐明了这种双功能催化剂在全水分解方面前所未有的性能。