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Electric-Field-Induced Connectivity Switching in Single-Molecule Junctions
Author(s) -
Chun Tang,
Jueting Zheng,
Yiling Ye,
Junyang Liu,
Lijue Chen,
Zhewei Yan,
Zhixin Chen,
Lichuan Chen,
Xiaoyan Huang,
Jie Bai,
Zhaobin Chen,
Jia Shi,
Haiping Xia,
Wenjing Hong
Publication year - 2019
Publication title -
iscience
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.805
H-Index - 27
ISSN - 2589-0042
DOI - 10.1016/j.isci.2019.100770
Subject(s) - molecule , molecular switch , electrode , electric field , nanotechnology , molecular electronics , fabrication , materials science , chemistry , chemical physics , physics , alternative medicine , organic chemistry , pathology , medicine , quantum mechanics
Summary The manipulation of molecule-electrode interaction is essential for the fabrication of molecular devices and determines the connectivity from electrodes to molecular components. Although the connectivity of molecular devices could be controlled by molecular design to place anchor groups in different positions of molecule backbones, the reversible switching of such connectivities remains challenging. Here, we develop an electric-field-induced strategy to switch the connectivity of single-molecule junctions reversibly, leading to the manipulation of different connectivities in the same molecular backbone. Our results offer a new concept of single-molecule manipulation and provide a feasible strategy to regulate molecule-electrode interaction.

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