State Key Laboratory of Applied Organic Chemistry (SKLAOC), Lanzhou University, Lanzhou 730000, China.
Phys Chem Chem Phys. 2011 Sep 21;13(35):15882-90. doi: 10.1039/c0cp02693j. Epub 2011 Aug 5.
The feasibility of employing azulene-like molecules as a new type of high performance substitution-free molecular rectifier has been explored using NEGF-DFT calculation. The electronic transport behaviors of metal-molecule-metal junctions consisting of various azulene-like dithiol molecules are investigated, which reveals that the azulene-like molecules exhibit high conductance and bias-dependent rectification effects. Among all the substitution-free azulene-like structures, cyclohepta[b]cyclopenta[g]naphthalene exhibits the highest rectification ratio, revealing that the all fused aromatic ring structure and an appropriate separation between the pentagon and heptagon rings are essential for achieving both high conductance and high rectification ratio. The rectification ratio can be increased by substituting the pentagon ring with electron-withdrawing group and/or the heptagon ring with electron donating groups. Further increase of the rectification ratio may also be obtained by lithium adsorption on the pentagon ring. This work reveals that azulene-like molecules may be used as a new class of highly conductive unimolecular rectifiers.
采用 NEGF-DFT 计算研究了薁类分子作为新型高性能无取代分子整流器的可行性。研究了由各种薁类二硫醇分子组成的金属-分子-金属结的电子输运行为,结果表明薁类分子表现出高电导和偏压相关整流效应。在所有无取代薁类结构中,环庚[b]环戊[g]萘表现出最高的整流比,表明全稠合芳环结构和五元环与七元环之间的适当分离对于实现高电导和高整流比都是必不可少的。通过在五元环上取代吸电子基团和/或在七元环上取代供电子基团,可以提高整流比。通过在五元环上吸附锂也可以进一步提高整流比。这项工作表明,薁类分子可用作新型高导电单分子整流器。