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New Mechanism for N_2 Reduction: The Essential Role of Surface Hydrogenation

机译:N_2还原的新机制:表面氢化的重要作用

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Electrocatalytic N-2 reduction is one of the most promising ways for green and sustainable production of NH3. However, a mechanistic understanding of the N-2 reduction process remains very limited. Herein, a surface-hydrogenation mechanism for the N-2 reduction reaction is proposed, which can well address the recently emerged sharp discrepancies between experiments and computations. Our results reveal that surface hydrogenation can drive N-2 reduction reaction on catalysts with weak N-2-binding strength (i.e., noble-metal catalysts) at low potentials. Instead of N-2 adsorption, the reduction of H+ is found to be the first step, which is also the potential determining step of the whole process. N-2 can be activated and reduced into *N2H2 subsequently by overcoming relatively high energy barriers, which determines the total reaction rate. Moreover, the cooperative effect of surface *H and the catalysts plays a key role in the activation of N-2. Our work not only provides new insights into the N-2 reduction reaction, but also paves a promising way for advancing sustainable NH3 production.
机译:电催化还原N-2是绿色和可持续生产NH3的最有希望的方法之一。但是,对N-2还原过程的机械理解仍然非常有限。在此,提出了一种用于N-2还原反应的表面加氢机理,该机理可以很好地解决实验和计算之间最近出现的尖锐差异。我们的结果表明,表面加氢可以在低电势下驱动具有弱N-2结合强度的催化剂(即贵金属催化剂)上的N-2还原反应。代替N-2吸附,发现还原H +是第一步,这也是整个过程的潜在确定步骤。 N-2可以通过克服较高的能垒来活化并还原为* N2H2,后者决定了总反应速率。此外,表面* H与催化剂的协同作用在N-2的活化中起关键作用。我们的工作不仅为N-2还原反应提供了新见解,而且为推进可持续的NH3生产铺平了一条有希望的途径。

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