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Atomically confined calcium in nitrogen-doped graphene as an efficient heterogeneous catalyst for hydrogen evolution

机译:氮掺杂石墨烯的原子狭窄钙作为氢进化的有效异质催化剂

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摘要

Calcium is one of the most abundant and cheapest elements on earth. However, due to the lack of d-orbitals for chemical adsorption, it is generally considered as a stoichiometric reagent with no catalytic activities in heterogeneous catalysis. In this research, we have revealed that atomically confined Ca in nitrogen-doped graphene (Ca1-NG) can be an effective heterogeneous catalyst to boost both electrocatalytic and photocatalytic hydrogen evolution reactions (HER). Ca single atoms anchored in NG can efficiently enhance the HER performance due to the improvement of the interfacial charge transfer rate and suppression of the photo-generated charge recombination. Density functional theory calculations show that the high catalytic activity of Ca1-NG results from the Ca single atoms in NG, which leads to multiple H adsorption configurations with favorable ΔGH∗ values for HER. This research can be valuable for the designing of environmentally friendly, economical and efficient catalysts for renewable hydrogen production.
机译:钙是地球上最丰富而最便宜的元素之一。然而,由于缺乏用于化学吸附的D-轨道,通常认为是化学计量试剂,在异质催化中没有催化活性。在该研究中,我们揭示了氮掺杂石墨烯(Ca1-Ng)中的原子限制Ca可以是有效的异质催化剂,以提高电催化和光催化氢进化反应(她)。由于界面电荷转移速率和光生电电荷重组的抑制,CA单个原子可以有效地提高她的性能。密度函数理论计算表明,CA1-NG的高催化活性由NG中的Ca单个原子产生,这导致对她有利的ΔGh*值的多个H吸附配置。该研究对于设计环保,经济高效催化剂的可再生氢气生产可能是有价值的。

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