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Tuning the photocatalytic water-splitting performance with the adjustment of diameter in an armchair WSSe nanotube

机译:Tuning the photocatalytic water-splitting performance with the adjustment of diameter in an armchair WSSe nanotube

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摘要

Due to the enigmatical electrostatic potential difference between the inside and outside layers,the relationship between the diameter and the photocatalytic property of the Janus transition metal dichalcogenides nanotube is still unclear.In this job,for the first time we calculate the electrostatic potential difference of the Janus WSSe armchair nanotubes with corresponding building block models through the first principles calculations.The electrostatic potential difference increases as the diameter increases.Then,it is observed that the WSSe armchair nanotubes with smaller diameter have stronger oxidation capacity,weaker reduction capacity,and higher solar-to-hydrogen conversion efficiency.Furthermore,the diminution of diameter could make the band gap drop,and even cause a direct-indirect transformation of band structure.The adjustment of diameter could also regulate the ability of adsorbing water molecules at the insider and outside layers.Moreover,the suitable band edge positions,wide optical absorbance region(to the near-infrared),outstanding solar-to-hydrogen efficiency(up to 28.99%),high carrier separation,adequate photoexcited carrier driving forces,as well as the energetic and thermal stability,render these nanotubes befitting the photocata lytic water-splitting application.Our study not only predicts a kind of ideal water-splitting photocatalyst,but also shows an effective way to improve their photocatalytic performances.

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  • 来源
    《天然气化学(英文版)》 |2021年第10期|228-235|共8页
  • 作者单位

    School of Physics and Electric Engineering Anyang Normal University Anyang 455000 Henan China;

    School of Mechanical Medical and Process Engineering Queensland University of Technology Gardens Point Campus QLD 4001 Brisbane Australia;

    School of Electronic and Information Engineering Liaoning Technical University Huludao 125105 Liaoning China;

    School of Physics and Electric Engineering Anyang Normal University Anyang 455000 Henan China;

    School of Physics and Electric Engineering Anyang Normal University Anyang 455000 Henan China;

    School of Physics and Electric Engineering Anyang Normal University Anyang 455000 Henan China;

    Key Lab of Advanced Transducers and Intelligent Control System Ministry of Education Taiyuan University of Technology Taiyuan 030024 Shanxi China;

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