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首页> 外文期刊>The Journal of Chemical Physics >Communication: Electrical rectification of C59N: The role of anchoring and doping sites
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Communication: Electrical rectification of C59N: The role of anchoring and doping sites

机译:交流:C59N的电整流:锚固和掺杂部位的作用

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Based on the nonequilibrium Green's function formalism and density-functional theory, we investigate the onset of electrical rectification in a single C59N molecule in conjunction with gold electrodes. Our calculations reveal that rectification is dependent upon the anchoring of the Au atom on C59N; when the Au electrode is singly bonded to a C atom (labeled here as A), the system does not exhibit rectification, whereas when the electrode is connected to the C-C bridge site between two hexagonal rings (labeled here as B), transmission asymmetry is observed, where the rectification ratio reaches up to 2.62 at +/- 1 V depending on the N doping site relative to the anchoring site. Our analysis of the transmission mechanism shows that N doping of the B configuration causes rectification because more transmission channels are available for transmission in the B configuration than in the A configuration. (C) 2016 AIP Publishing LLC.
机译:基于非平衡格林函数形式论和密度泛函理论,我们研究了在单个C59N分子中结合金电极进行电整流的过程。我们的计算表明,整流取决于Au原子在C59N上的锚定。当Au电极单键结合到C原子(在此标记为A)时,系统不会显示出整流作用;而当电极连接到两个六角环(在此标记为B)之间的CC桥位置时,透射不对称为观察到,根据相对于锚固部位的N掺杂部位,在+/- 1 V时,整流比达到2.62。我们对传输机制的分析表明,对B配置进行N掺杂会引起整流,因为与A配置相比,B配置中可用于传输的传输通道更多。 (C)2016 AIP出版有限责任公司。

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