Huang Xiang, Wang Jiong, Tao Hua Bing, Tian Hao, Xu Hu
Department of Physics , Southern University of Science and Technology , Shenzhen 518055 , China . Email:
School of Physics and Technology , Wuhan University , Wuhan 430072 , China.
Chem Sci. 2019 Feb 1;10(11):3340-3345. doi: 10.1039/c8sc04521f. eCollection 2019 Mar 21.
The development of a universal activity descriptor like the d-band model for transition metal catalysts is of great importance to catalyst design. However, due to the complicated electronic structures of metal oxides, the correlation of the binding energies of reaction intermediates (*OH, *O, and *OOH) in the oxygen evolution reaction (OER) with experimentally controllable properties of metal oxides has not been well established. Here we demonstrate that excess electrons are the essential factor that governs the binding properties of intermediates on the surfaces of reducible metal oxides. We propose that the number of excess electrons (NEE) is an essential activity descriptor toward the OER activities of these oxides, which perfectly reproduces the volcano curve plotted using the descriptor Δ - Δ , so that tuning NEE can effectively tailor the OER activities of reducible metal oxide based catalysts. Guided by this descriptor, we predict a novel non-precious catalyst with an overpotential of 0.54 eV, which could be a potential alternative to current Ru or Ir based catalysts.
开发一种通用的活性描述符,如用于过渡金属催化剂的d带模型,对于催化剂设计至关重要。然而,由于金属氧化物复杂的电子结构,析氧反应(OER)中反应中间体(*OH、O和OOH)的结合能与金属氧化物的实验可控性质之间的相关性尚未得到很好的确立。在此,我们证明过量电子是决定可还原金属氧化物表面中间体结合性质的关键因素。我们提出,过量电子数(NEE)是这些氧化物OER活性的一个关键活性描述符,它完美地再现了使用描述符Δ - Δ绘制的火山曲线,因此调节NEE可以有效地调整基于可还原金属氧化物的催化剂的OER活性。在这个描述符的指导下,我们预测了一种过电位为0.54 eV的新型非贵金属催化剂,它可能是当前基于Ru或Ir的催化剂的潜在替代品。