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通过NiCoP/MXene电催化剂中相邻的Pt原子提高Ni/Co活性用于碱性析氢反应

Enhancing Ni/Co Activity by Neighboring Pt Atoms in NiCoP/MXene Electrocatalyst for Alkaline Hydrogen Evolution.

作者信息

Niu Hua-Jie, Huang Chuanxue, Sun Tong, Fang Zhen, Ke Xiaoxing, Zhang Ruimin, Ran Nian, Wu Jianbo, Liu Jianjun, Zhou Wei

机构信息

School of Chemistry, Beijing Advanced Innovation Center for Biomedical Engineering, Beihang University, Beijing, 100191, China.

College of Chemistry and Chemical Engineering, Instrumental Analysis Center of Qingdao University, Qingdao University, Qingdao, 266071, China.

出版信息

Angew Chem Int Ed Engl. 2024 May 13;63(20):e202401819. doi: 10.1002/anie.202401819. Epub 2024 Apr 10.

Abstract

Density functional theory (DFT) calculations demonstrate neighboring Pt atoms can enhance the metal activity of NiCoP for hydrogen evolution reaction (HER). However, it remains a great challenge to link Pt and NiCoP. Herein, we introduced curvature of bowl-like structure to construct Pt/NiCoP interface by adding a minimal 1 ‰-molar-ratio Pt. The as-prepared sample only requires an overpotential of 26.5 and 181.6 mV to accordingly achieve the current density of 10 and 500 mA cm in 1 M KOH. The water dissociation energy barrier (E) has a ~43 % decrease compared with NiCoP counterpart. It also shows an ultrahigh stability with a small degradation rate of 10.6 μV h at harsh conditions (500 mA cm and 50 °C) after 3000 hrs. X-ray photoelectron spectroscopy (XPS), soft X-ray absorption spectroscopy (sXAS), and X-ray absorption fine structure (XAFS) verify the interface electron transfer lowers the valence state of Co/Ni and activates them. DFT calculations also confirm the catalytic transition step of NiCoP can change from Heyrovsky (2.71 eV) to Tafel step (0.51 eV) in the neighborhood of Pt, in accord with the result of the improved H at the interface disclosed by in situ electrochemical impedance spectroscopy (EIS) and scanning electrochemical microscopy (SECM) tests.

摘要

密度泛函理论(DFT)计算表明,相邻的铂原子可以增强NiCoP对析氢反应(HER)的金属活性。然而,将铂与NiCoP连接起来仍然是一个巨大的挑战。在此,我们引入碗状结构的曲率,通过添加最低1‰摩尔比的铂来构建Pt/NiCoP界面。所制备的样品在1 M KOH中仅需要26.5和181.6 mV的过电位,就能相应地实现10和500 mA cm的电流密度。与NiCoP相比,水解离能垒(E)降低了约43%。在苛刻条件(500 mA cm和50°C)下经过3000小时后,它还表现出超高的稳定性,降解速率仅为10.6 μV h。X射线光电子能谱(XPS)、软X射线吸收光谱(sXAS)和X射线吸收精细结构(XAFS)证实,界面电子转移降低了Co/Ni的价态并使其活化。DFT计算还证实,在铂附近,NiCoP的催化过渡步骤可以从海洛夫斯基步骤(2.71 eV)转变为塔菲尔步骤(0.51 eV),这与原位电化学阻抗谱(EIS)和扫描电化学显微镜(SECM)测试所揭示的界面处氢改善的结果一致。

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