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二氧化碳还原与析氢反应之间竞争的机理研究以及在石墨相氮化碳上负载单原子催化剂的选择性调控

Mechanistic study of the competition between carbon dioxide reduction and hydrogen evolution reaction and selectivity tuning loading single-atom catalysts on graphitic carbon nitride.

作者信息

Foo Joel Jie, Ng Sue-Faye, Xiong Mo, Ong Wee-Jun

机构信息

School of Energy and Chemical Engineering, Xiamen University Malaysia, Sepang, Selangor Darul Ehsan, 43900, Malaysia.

Center of Excellence for NaNo Energy & Catalysis Technology (CONNECT), Xiamen University Malaysia, Sepang, Selangor Darul Ehsan, 43900, Malaysia.

出版信息

Nanoscale. 2024 Aug 29;16(34):16015-16025. doi: 10.1039/d4nr01932f.

Abstract

In the context of catalytic CO reduction (CORR), the interference of the inherent hydrogen evolution reaction (HER) and the possible selectivity towards CO have posed a significant challenge to the generation of formic acid. To address this hurdle, in this work, we have investigated the impact of different single-atom metal catalysts on tuning selectivity by employing density functional theory (DFT) calculations to scrutinize the reaction pathways. Single-atom catalysts supported on carbon-based systems have proven to be pivotal in altering both the activity and selectivity of the CORR. In this study, a series of single-atom-metal-loaded g-CN monolayers (MCN, M = Ni, Cu, Zn, Ga, Cd, In, Sn, Pb, Ag, Au, Bi, Pd and Pt) were systematically examined. Through detailed DFT calculations, we explored their influence on reaction selectivity between the *COOH and *OCHO intermediates. Notably, NiCN favors the reaction the *OCHO route, with a significantly lower rate-determining potential of 0.36 eV, which is approximately 73.5% lower than that of the CN system (1.36 eV). Most importantly, the Ni single-atom catalyst with lower coordination significantly enhances CO adsorption, promoting CORR over HER. Overall, this study, guided by DFT calculations, provides a theoretical prediction of how the selection of single-atom metal catalysts can effectively modulate the reaction pathway, thereby offering a potential solution for achieving high product selectivity in CORR.

摘要

在催化CO还原反应(CORR)的背景下,固有析氢反应(HER)的干扰以及对CO可能的选择性对甲酸的生成构成了重大挑战。为了克服这一障碍,在本工作中,我们通过采用密度泛函理论(DFT)计算来研究不同单原子金属催化剂对调节选择性的影响,以仔细审查反应路径。负载在碳基体系上的单原子催化剂已被证明在改变CORR的活性和选择性方面起着关键作用。在本研究中,系统地研究了一系列负载单原子金属的g-CN单层(MCN,M = Ni、Cu、Zn、Ga、Cd、In、Sn、Pb、Ag、Au、Bi、Pd和Pt)。通过详细的DFT计算,我们探讨了它们对COOH和OCHO中间体之间反应选择性的影响。值得注意的是,NiCN有利于*OCHO路径的反应,其速率决定电位显著降低,为0.36 eV,比CN体系(1.36 eV)低约73.5%。最重要的是,具有较低配位的Ni单原子催化剂显著增强了CO吸附,促进了CORR而非HER。总体而言,这项在DFT计算指导下的研究提供了关于如何选择单原子金属催化剂可以有效调节反应路径的理论预测,从而为在CORR中实现高产物选择性提供了潜在的解决方案。

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