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Updated: Jun 5, 2026

Probe Type II Band Alignment in One-Dimensional Van Der Waals Heterostructures Using First-Principles Calculations
Published on: October 12, 2019
Phase reconstruction of Ni2P/NiSe2 heterostructure with co doping as bifunctional electrocatalyst for boosting
Yanyan Wu1, Yingnan Dou2, Yan Wang1
1College of Physics Science and Technology, Shenyang Normal University, 253, Huanghe North Street, Shenyang 110034, China.
Abstract:
Designing efficient and low-cost bifunctional electrocatalysts is critical for advancing the practical application of water electrolysis for hydrogen production. Herein, we propose a dual modulation strategy to construct Co doped Ni2P/NiSe2 Heterogeneous electrocatalysts (Co-Ni2P/NiSe2) with staggered structure for boosting alkaline water splitting. Operando Raman spectroscopy was employed to monitor the evolution of active species, revealing that Co doping facilitates the phase transition of Co-Ni2P/NiSe2 from β-NiOOH to γ-NiOOH under operando electrochemical conditions. Density functional theory (DFT) calculations further clarify the origin of active site in Co-Ni2P/NiSe2, demonstrating that the Co site promotes the oxygen evolution reaction (OER), whereas the Co-Ni dual sites exhibit superior activity toward the hydrogen evolution reaction (HER). The reconstructed Co-Ni2P/NiSe2 exhibits a low overpotentials of 218 and 108 mV at 10 mA cm-2 for OER and HER, respectively. Furthermore, the two-electrode electrolyzer needs a low cell voltage of 1.47 V at 10 mA cm-2 and maintains exceptional durability for over 500 h at 100 mA cm-2. This work presents a novel mechanistic insight into the design of promising bifunctional electrocatalyst.
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