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用于CO还原反应的多相电催化剂中N配位单原子Ni位点的起源

Origin of the N-coordinated single-atom Ni sites in heterogeneous electrocatalysts for CO reduction reaction.

作者信息

Wang Yu, You Liming, Zhou Kun

机构信息

Environmental Process Modelling Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University 1 CleanTech Loop Singapore 637141 Singapore

School of Mechanical and Aerospace Engineering, Nanyang Technological University 50 Nanyang Avenue Singapore 639798 Singapore.

出版信息

Chem Sci. 2021 Oct 7;12(42):14065-14073. doi: 10.1039/d1sc04094d. eCollection 2021 Nov 3.

Abstract

Heterogeneous Ni-N-C single-atom catalysts (SACs) have attracted great research interest regarding their capability in facilitating the CO reduction reaction (CORR), with CO accounting for the major product. However, the fundamental nature of their active Ni sites remains controversial, since the typically proposed pyridinic-type Ni configurations are inactive, display low selectivity, and/or possess an unfavorable formation energy. Herein, we present a constant-potential first-principles and microkinetic model to study the CORR at a solid-water interface, which shows that the electrode potential is crucial for governing CO activation. A formation energy analysis on several NiN C ( = 1-4) moieties indicates that the predominant Ni moieties of Ni-N-C SACs are expected to have a formula of NiN. After determining the potential-dependent thermodynamic and kinetic energy of these Ni moieties, we discover that the energetically favorable pyrrolic-type NiN moiety displays high activity for facilitating the selective CORR over the competing H evolution. Moreover, model polarization curves and Tafel analysis results exhibit reasonable agreement with existing experimental data. This work highlights the intrinsic tetrapyrrolic coordination of Ni for facilitating the CORR and offers practical guidance for the rational improvement of SACs, and this model can be expanded to explore mechanisms of other electrocatalysis in aqueous solutions.

摘要

非均相镍 - 氮 - 碳单原子催化剂(SACs)因其在促进CO还原反应(CORR)方面的能力而引起了极大的研究兴趣,其中CO是主要产物。然而,其活性镍位点的基本性质仍存在争议,因为通常提出的吡啶型镍构型是无活性的,选择性低,和/或具有不利的形成能。在此,我们提出了一种恒电位第一性原理和微观动力学模型来研究固 - 水界面处的CORR,结果表明电极电位对于控制CO活化至关重要。对几种NiNₓC(x = 1 - 4)部分的形成能分析表明,Ni - N - C SACs的主要镍部分预计具有NiN的化学式。在确定了这些镍部分的电位依赖热力学和动能后,我们发现能量上有利的吡咯型NiN部分在促进选择性CORR方面比竞争性析氢反应具有更高的活性。此外,模型极化曲线和塔菲尔分析结果与现有实验数据表现出合理的一致性。这项工作突出了镍的固有四吡咯配位对促进CORR的作用,并为SACs的合理改进提供了实际指导,并且该模型可以扩展以探索水溶液中其他电催化的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26ed/8565395/e9bec081806c/d1sc04094d-f1.jpg

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