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Sn-N-C单原子催化剂氧还原反应活性的理论见解

Theoretical Insights on ORR Activity of Sn-N-C Single-Atom Catalysts.

作者信息

Zhang Yuhui, Li Boyang, Su Yaqiong

机构信息

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

School of Chemistry, Engineering Research Center of Energy Storage Materials and Devices of Ministry of Education, National Innovation Platform (Center) for Industry-Education Integration of Energy Storage Technology, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Molecules. 2023 Jul 21;28(14):5571. doi: 10.3390/molecules28145571.

Abstract

The advancement of efficient and stable single-atom catalysts (SACs) has become a pivotal pursuit in the field of proton exchange membrane fuel cells (PEMFCs) and metal-air batteries (MABs), aiming to enhance the utilization of clean and sustainable energy sources. The development of such SACs has been greatly significant in facilitating the oxygen reduction reaction (ORR) process, thereby contributing to the progress of these energy conversion technologies. However, while transition metal-based SACs have been extensively studied, there has been comparatively less exploration of SACs based on p-block main-group metals. In this study, we conducted an investigation into the potential of p-block main-group Sn-based SACs as a cost-effective and efficient alternative to platinum-based catalysts for the ORR. Our approach involved employing density functional theory (DFT) calculations to systematically examine the catalyst properties of Sn-based N-doped graphene SACs, the ORR mechanism, and their electrocatalytic performance. Notably, we employed an H atom-decorated N-based graphene matrix as a support to anchor single Sn atoms, creating a contrast catalyst to elucidate the differences in activity and properties compared to pristine Sn-based N-doped graphene SACs. Through our theoretical analysis, we gained a comprehensive understanding of the active structure of Sn-based N-doped graphene electrocatalysts, which provided a rational explanation for the observed high four-electron reactivity in the ORR process. Additionally, we analyzed the relationship between the estimated overpotential and the electronic structure properties, revealing that the single Sn atom was in a +2 oxidation state based on electronic analysis. Overall, this work represented a significant step towards the development of efficient and cost-effective SACs for ORR which could alleviate environmental crises, advance clean and sustainable energy sources, and contribute to a more sustainable future.

摘要

高效稳定的单原子催化剂(SACs)的发展已成为质子交换膜燃料电池(PEMFCs)和金属空气电池(MABs)领域的关键追求,旨在提高清洁和可持续能源的利用率。此类SACs的发展在促进氧还原反应(ORR)过程中具有重大意义,从而推动了这些能量转换技术的进步。然而,尽管基于过渡金属的SACs已得到广泛研究,但基于p区主族金属的SACs的探索相对较少。在本研究中,我们调查了p区主族Sn基SACs作为ORR中铂基催化剂的经济高效替代品的潜力。我们的方法包括使用密度泛函理论(DFT)计算来系统地研究Sn基N掺杂石墨烯SACs的催化剂性能、ORR机理及其电催化性能。值得注意的是,我们使用氢原子修饰的N基石墨烯基质作为载体来锚定单个Sn原子,创建了一种对比催化剂,以阐明与原始Sn基N掺杂石墨烯SACs相比在活性和性能上的差异。通过我们的理论分析,我们全面了解了Sn基N掺杂石墨烯电催化剂的活性结构,这为ORR过程中观察到的高四电子反应性提供了合理的解释。此外,我们分析了估计的过电位与电子结构性质之间的关系,通过电子分析表明单个Sn原子处于+2氧化态。总体而言,这项工作朝着开发用于ORR的高效且经济高效的SACs迈出了重要一步,这可以缓解环境危机,推进清洁和可持续能源,并为更可持续的未来做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ffc/10384839/88deb033c60a/molecules-28-05571-g001.jpg

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