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首页> 外文期刊>Applied Surface Science >Adsorption or deoxidation of H_2 interacted with Fe_3O_4 surface under different H coverage: A DFT study
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Adsorption or deoxidation of H_2 interacted with Fe_3O_4 surface under different H coverage: A DFT study

机译:DFT研究表明在不同的H覆盖下H_2与Fe_3O_4表面相互作用的吸附或脱氧

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摘要

The adsorption and dissociation of H-2, the migration ability of H atom, as well as the competition relationship between adsorption or deoxidation of H-2 with increasing of H adsorption coverage on the Fe3O4 (1 1 1)-Fe-tet1 and (0 0 1)-B surfaces were systematically studied by DFT + U method. The adsorption energy and the optimal dissociation barrier of H-2 on two Fe3O4 surface is about 0.04 eV and 1.0 eV, respectively. The surface O site is the most favorable adsorption site for H and the dissociated H-2 is adsorbed on the adjacent surface O atoms. When H coverage is low, H preferentially adsorbs to the most stable O sites with the maximum adsorption heat. With the increasing of H coverage, the adsorption heat gradually decreases. When H coverage approaches saturated coverage, H-2 reacted with surface O to form H2O become more favorable than direct adsorption. The phase diagrams of H adsorption/deoxidation at different temperature and pressure ranges were calculated. It can be found that the reduction of surface O become more favorable with the increasing of H coverage. The results indicate that the degree of reduction difficulty of surface O can be controlled by changing the coverage of H by adjusting the reaction condition.
机译:H-2在Fe3O4(1 1 1)-Fe-tet1和(-)上的吸附和解离,H原子的迁移能力以及H-2的吸附或脱氧与H吸附覆盖率的竞争关系。 0 0 1)-B表面通过DFT + U方法进行了系统研究。 H-2在两个Fe3O4表面的吸附能和最佳解离势垒分别约为0.04 eV和1.0 eV。表面O位点是对H最有利的吸附位点,并且解离的H-2被吸附在相邻的表面O原子上。当H覆盖率低时,H优先以最大的吸附热吸附到最稳定的O位。随着H覆盖率的增加,吸附热逐渐降低。当H覆盖率接近饱和覆盖率时,H-2与表面O反应形成H2O比直接吸附更有利。计算了不同温度和压力范围下H吸附/脱氧的相图。可以发现,随着H覆盖率的增加,表面O的还原变得更加有利。结果表明,通过调节反应条件改变H的覆盖率,可以控制表面O的还原难度。

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  • 来源
    《Applied Surface Science》 |2020年第1期|144097.1-144097.10|共10页
  • 作者单位

    Yulin Univ Sch Chem & Chem Engn Shaanxi Key Lab Low Metamorph Coal Clean Utilizat Yulin 719000 Peoples R China|Synfuels China Co Ltd Natl Energy Ctr Coal Clean Fuels Beijing 101400 Peoples R China;

    Yulin Univ Sch Chem & Chem Engn Shaanxi Key Lab Low Metamorph Coal Clean Utilizat Yulin 719000 Peoples R China;

    Chinese Acad Sci Inst Coal Chem State Key Lab Coal Convers Taiyuan 030001 Shanxi Peoples R China|Synfuels China Co Ltd Natl Energy Ctr Coal Clean Fuels Beijing 101400 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Density functional theory; Fe3O4; H-2 adsorption; Deoxidation; Phase diagrams;

    机译:密度泛函理论;Fe3O4;H-2吸附;脱氧;相图;

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