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A Unique Ru-N4-P Coordinated Structure Synergistically Waking Up the Nonmetal P Active Site for Hydrogen Production

机译:一种独特的Ru-N4-P协调结构协同唤醒非金属P活性部位进行氢气生产

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摘要

Numerous experiments have demonstrated that the metal atom is the active center of monoatomic catalysts for hydrogen evolution reaction (HER), while the active sites of nonmetal doped atoms are often neglected. By combining theoretical prediction and experimental verification, we designed a unique ternary Ru-N4-P coordination structure constructed by monodispersed Ru atoms supported on N,P dual-doped graphene for highly efficient hydrogen evolution in acid solution. The density functional theory calculations indicate that the charge polarization will lead to the most charge accumulation at P atoms, which results in a distinct nonmetallic P active sites with the moderate H∗ adsorption energy. Notably, these P atoms mainly supply highly efficient catalytic sites with ultrasmall absorption energy of 0.007 eV. Correspondingly, the Ru-N4-P demonstrated outstanding HER performance not only in an acidic condition but also in alkaline environment. Notably, the performance of Ru-NPC catalyst at high current is even superior to the commercial Pt/C catalysts, whether in acidic or alkaline medium. Our in situ synchrotron radiation infrared spectra demonstrate that a P-Hads intermediate is continually emerging on the Ru-NPC catalyst, actively proving the nonmetallic P catalytically active site in HER that is very different with previously reported metallic sites.
机译:许多实验表明,金属原子是氢进化反应(她)的单原子催化剂的活性中心,而非金属掺杂原子的活性位点通常被忽略。通过组合理论预测和实验验证,我们设计了由支持在N,P双掺杂石墨烯的单分散Ru原子构成的独特的三元Ru-N4-P协调结构,用于高效酸溶液中的高效氢化。密度函数理论计算表明,电荷极化将导致P原子中最多的电荷累积,这导致具有中等H *吸附能量的不同的非金属P活性位点。值得注意的是,这些P原子主要提供高效的催化位点,具有0.007eV的超大吸收能量。相应地,Ru-N4-P不仅在酸性条件下表现出优异的表现,而且在碱性环境中显示出优异的性能。值得注意的是,无论是酸性或碱性介质中,高电流下Ru-NPC催化剂的性能甚至优于商业Pt / C催化剂。我们的原位同步辐射红外光谱表明,在Ru-NPC催化剂上不断地出现p-vss中间体,在其上积极证明非金属P催化活性位点与先前报道的金属位点非常不同。

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