多环芳烃
碳氢化合物
分子
电导
计算化学
化学物理
平面(几何)
化学
材料科学
有机化学
物理
凝聚态物理
几何学
数学
作者
Ziwei Yang,Shadiah Albalawi,Shiqiang Zhao,Yaoguang Li,Hewei Zhang,Yu‐Ling Zou,Shengwei Hou,Lichuan Chen,Jia Shi,Yang Yang,Qingqing Wu,Colin J. Lambert,Wenjing Hong
标识
DOI:10.1002/chem.202402095
摘要
In the cross-plane single-molecule junctions, the correlation between molecular aromaticity and conductance remained puzzling. Cross-plane break junction (XPBJ) provides new insight into understanding the role of aromaticity and conjugation to molecules on charge transport through the planar molecules. In this work, we investigated the modulation of cross-plane charge transport in pyrene derivatives by hydrogenation and substituents based on the XPBJ method that differs from those used in-plane transport. We measured the electrical conductance of the hydrogenated derivatives of the pyrenes and found that hydrogenation reduces conductance, and the fully hydrogenated molecule has the lowest conductance. Conductance of pyrene derivatives increased after substitution by both electron-donating and electron-withdrawing groups. By calculating, the trend in decreased conductance of hydrogenated pyrene was found to be consistent with the change in aromaticity. Electron-withdrawing substituents reduce the aromaticity of the molecule and narrow the HOMO-LUMO gap, while electron-donating groups increase the aromaticity but also narrow the gap. Our work reveals the potential of fine-tuning the structure of the pyrene molecule to control the cross-plane charge transport through the single-molecule junctions.
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