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Active Electron Density Modulation of Co3O4‐Based Catalysts Enhances their Oxygen Evolution Performance
Authors:Dong He  Xianyin Song  Wenqing Li  Chongyang Tang  Jiangchao Liu  Zunjian Ke  Changzhong Jiang  Xiangheng Xiao
Abstract:Despite the fact that many strategies have been developed to improve the efficiency of the oxygen evolution reaction (OER), the precise modulation of the surface electronic properties of catalysts to improve their catalytic activity is still challenging. Herein, we demonstrate that the surface active electron density of Co3O4 can be effectively regulated by an argon‐ion irradiation method. X‐ray photoelectron and synchrotron x‐ray absorption spectroscopy, UV photoelectron spectrometry, and DFT calculations show that the surface active electron density band center of Co3O4 has been upshifted, leading to a significantly enhanced absorption capability of the oxo group. The optimized Co3O4‐based catalysts exhibit an excellent overpotential of 260 mV at 10 mA cm?2 and Tafel slope of 54 mV dec?1, superior to the capability of the benchmark RuO2, representing one of the best Co‐based OER catalysts. This approach could guide the future rational design and discovery of ideal electrocatalysts.
Keywords:active electron modulation  Co3O4  ion irradiation  oxo group  oxygen evolution reaction
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