节点文献

Resonant Charge Transport Assisted by the Molecular Vibration in Single-Molecule Junction from Time-Domain ab initio Nonadiabatic Molecular Dynamics Simulations

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 田韫哲郑奇靖赵瑾

【Author】 Yunzhe Tian;Qijing Zheng;Jin Zhao;Department of Physics and ICQD/Hefei National Research Center for Physical Sciences at the Microscale,University of Science and Technology of China;Department of Physics and Astronomy, University of Pittsburgh;

【通讯作者】 郑奇靖;赵瑾;

【机构】 Department of Physics and ICQD/Hefei National Research Center for Physical Sciences at the Microscale,University of Science and Technology of ChinaDepartment of Physics and Astronomy, University of Pittsburgh

【摘要】 Using ab initio nonadiabatic molecular dynamics simulation, we study the time-dependent charge transport dynamics in a single-molecule junction formed by gold(Au) electrodes and a single benzene-1,4-dithiol(BDT)molecule. Two different types of charge transport channels are found in the simulation. One is the routine nonresonant charge transfer path, which occurs in several picoseconds. The other is activated when the electronic state of the electrodes and that of the molecule get close in energy, which is referred to as the resonant charge transport. More strikingly, the resonant charge transfer occurs in an ultrafast manner within 100 fs, which notably increases the conductance of the device. Further analysis shows that the resonant charge transport is directly assisted by the B2 and A1 molecular vibration modes. Our study provides atomic insights into the time-dependent charge transport dynamics in single-molecule junctions, which is important for designing highly efficient single-molecule devices.

【Abstract】 Using ab initio nonadiabatic molecular dynamics simulation, we study the time-dependent charge transport dynamics in a single-molecule junction formed by gold(Au) electrodes and a single benzene-1,4-dithiol(BDT)molecule. Two different types of charge transport channels are found in the simulation. One is the routine nonresonant charge transfer path, which occurs in several picoseconds. The other is activated when the electronic state of the electrodes and that of the molecule get close in energy, which is referred to as the resonant charge transport. More strikingly, the resonant charge transfer occurs in an ultrafast manner within 100 fs, which notably increases the conductance of the device. Further analysis shows that the resonant charge transport is directly assisted by the B2 and A1 molecular vibration modes. Our study provides atomic insights into the time-dependent charge transport dynamics in single-molecule junctions, which is important for designing highly efficient single-molecule devices.

【关键词】 resonantDomainjunctionroutinemannerconductancenotablybenzenereferreddesigning
【基金】 the support of the Strategic Priority Research Program of the Chinese Academy of Sciences (Grant No. XDB0450101);the National Key R&D Program of China (Grant No. 2017YFA0204904);the National Natural Science Foundation of China (Grant Nos. 11974322 and 12125408);the Informatization Plan of Chinese Academy of Sciences (Grant No. CAS-WX2021SF-0105);the National Natural Science Foundation of China (Grant No. 12174363);support from the National Science Foundation (Grant No. CHE-2102601)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2023年12期
  • 【分类号】O561
  • 【下载频次】1
节点文献中: 

本文链接的文献网络图示:

本文的引文网络