High catalyst performance of two-dimensional Ti3B3N3S6 for hydrogen evolution reaction

Yongxiu Sun, Zhijie Li
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Abstract

Single-atom catalysts (SACs) for the hydrogen evolution reaction (HER) is an efficient electrochemical pathway to produce the green production. However, the development of HER process is hampered by the lack of high-performance electrocatalysts. In this work, we proposed a new π-d conjugated structure of the Ti3B3N3S6 monolayer as the single-atom catalysts for the HER process by using the density functional theory (DFT) calculations. The calculated results show that the Ti atom is active site of the Ti3B3N3S6 monolayer with the high catalytic activity (ΔGH = –0.14 eV) for HER. The electronic properties of the Ti3B3N3S6 monolayer were explored by the electron localization function (ELF), Bader charge analysis and the polarized density of states (PDOS) density analysis. The Ti3B3N3S6 monolayer can promote the electronic transfer during the HER process, which indicates taht the Ti3B3N3S6 monolayer can is considered to investigate the catalytic activity for HER. The Gibbs free energy of H atoms adsorption on the Ti3B3N3S6 monolayer is –0.14 eV. Furthermore, the origin of high catalytic activity for the Ti3B3N3S6 monolayer was explored by the analysis the PDOS of the H adsorption on the Ti3B3N3S6 monolayer. Therefore, our work propose a new and high catalytic single-atom catalyst for the HER.
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二维Ti3B3N3S6对析氢反应具有较高的催化性能
用单原子催化剂催化析氢反应是实现绿色生产的有效电化学途径。然而,高性能电催化剂的缺乏阻碍了HER工艺的发展。本文利用密度泛函理论(DFT)计算,提出了一种新的π-d共轭结构的Ti3B3N3S6单层膜作为HER反应的单原子催化剂。计算结果表明,Ti原子是Ti3B3N3S6单层膜的活性位点,对HER具有较高的催化活性(ΔGH = -0.14 eV)。利用电子局域函数(ELF)、Bader电荷分析和极化态密度(PDOS)分析对Ti3B3N3S6单层的电子性质进行了研究。Ti3B3N3S6单层膜可以促进HER过程中的电子转移,这表明可以考虑使用Ti3B3N3S6单层膜来研究HER的催化活性。H原子在Ti3B3N3S6单层膜上吸附的吉布斯自由能为-0.14 eV。此外,通过分析氢吸附在Ti3B3N3S6单层膜上的PDOS,探讨了Ti3B3N3S6单层膜具有高催化活性的原因。因此,我们的工作提出了一种新型的高催化单原子催化剂。
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来源期刊
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发文量
342
审稿时长
6 weeks
期刊介绍: MATEC Web of Conferences is an Open Access publication series dedicated to archiving conference proceedings dealing with all fundamental and applied research aspects related to Materials science, Engineering and Chemistry. All engineering disciplines are covered by the aims and scope of the journal: civil, naval, mechanical, chemical, and electrical engineering as well as nanotechnology and metrology. The journal concerns also all materials in regard to their physical-chemical characterization, implementation, resistance in their environment… Other subdisciples of chemistry, such as analytical chemistry, petrochemistry, organic chemistry…, and even pharmacology, are also welcome. MATEC Web of Conferences offers a wide range of services from the organization of the submission of conference proceedings to the worldwide dissemination of the conference papers. It provides an efficient archiving solution, ensuring maximum exposure and wide indexing of scientific conference proceedings. Proceedings are published under the scientific responsibility of the conference editors.
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