Tunable hydrogen production of a transition metal-anchored CuInP2S6 monolayer with a ferroelectric switch
Abstract
The HER activity of a ferroelectric CuInP2S6 monolayer anchored by 3d transition metals was systematically investigated using first-principles calculations. The anchored 3d transition metals and ferroelectric switch could modulate the HER performance of CuInP2S6 monolayers. For example, the hydrogen adsorption free energy for Fe@CuInP2S6(↑) was 0.86 eV, while that of Fe@CuInP2S6(↓) fell to only 0.05 eV. The solar-to-hydrogen energy conversion efficiency of Cr@CuInP2S6(↓) and Fe@CuInP2S6(↓) were as high as 15.67% and 28.73%, respectively. Besides, a modified d band center model was proposed to predict the HER activity of the anchored CuInP2S6 monolayer.

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