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Enhancing single-molecule conductance of platinum (Ⅱ) complexes through synergistic aromaticity-assisted structural asymmetry
摘    要:Seeking the strategies of designing highly conductive molecular structures is one of the core researches in molecular electronics.As asymmetric structure has manifested feasible properties in comprehensive fields, we introduce the structures of asymmetric platinum(Ⅱ) complexes into the charge transport study at single-molecule scale for the first time. The single-molecule conductance measurement results reveal that, in platinum(Ⅱ)-aryloligoynyl structures, the conductance of asymmetrically coordinated complexes is obviously higher than that of the symmetric isomers with the same molecular length, while the conductance is almost identical in symmetric and asymmetric platinum(Ⅱ)-oligoynyl complexes. Theoretical study uncovers that, upon connecting to the oligoynyl structure, the aromatic group effectively extends the π-system of the whole conductive backbone and gathers the HOMO population mainly on the longer oligoynyl ligand, which reduces the energy barrier in electron transport and enhances the conductance through HOMO energy lifting. This result provides feasible strategy for achieving high conductive molecular devices.


Enhancing single-molecule conductance of platinum(II) complexes through synergistic aromaticity-assisted structural asymmetry
Duan,Ping,Liu,Junyang,Wang,Jin-Yun,Qu, Kai,Cai, Shuning,Wang, Fei,Chen, Lichuan,Huang, Xiaoyan,Li, Ruihao,Shi, Jia,Zhang, Qian-Chong,Hong, Wenjing,Chen, Zhong-Ning. Enhancing single-molecule conductance of platinum(II) complexes through synergistic aromaticity-assisted structural asymmetry[J]. Science China Chemistry, 2020, 63(4): 467-474. DOI: 10.1007/s11426-019-9692-3
Authors:Duan  Ping  Liu  Junyang  Wang  Jin-Yun  Qu   Kai  Cai   Shuning  Wang   Fei  Chen   Lichuan  Huang   Xiaoyan  Li   Ruihao  Shi   Jia  Zhang   Qian-Chong  Hong   Wenjing  Chen   Zhong-Ning
Affiliation:1.State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, 350002, China
;2.State Key Laboratory of Physical Chemistry of Solid Surfaces, Collaborative Innovation Center of Chemistry for Energy Materials (iChEM), NEL, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China
;
Abstract:Science China Chemistry - Seeking the strategies of designing highly conductive molecular structures is one of the core researches in molecular electronics. As asymmetric structure has manifested...
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