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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Density functional theory evidence for an electron hopping process in single-walled carbon nanotube-mediated redox reactions
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Density functional theory evidence for an electron hopping process in single-walled carbon nanotube-mediated redox reactions

机译:密度泛函理论证明单壁碳纳米管介导的氧化还原反应中电子跳跃过程

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The electron hopping mechanism in the single-walled carbon nanotube (SWCNT)-medi-ated redox reaction between anthraquinonyl (AQH2) and 4-arylhydroxyl amine (4AHA) groups is studied by density functional theory calculations. The (8, 0) SWCNT is used to mimic the real system of interest. It is found that electrons from the oxidized AQH2 group can be transferred to the oxidizing 4AHA group, at the other end of the nanotube, by a hopping process through the mediating SWCNT. Disparity of electron densities ascribable to non-localized electrons confirms this finding. The disparity, partial electron density difference, and Hirshfeld partial charges analyses show that the SWCNT can hold 87% of the extra electron density of the hypothetical negative intermediate produced from the oxidation of the AQH2 process. Chemical attachments of these two redox reagents to the SWCNT also cause new impurity states within the band gap, thereby giving more metallic characteristics to the system. These findings provide a detailed understanding of the electron hopping process and agree well with a previous experimental study.
机译:通过密度泛函理论计算研究了蒽醌基(AQH2)和4-芳基羟基胺(4AHA)基团在单壁碳纳米管(SWCNT)介导的氧化还原反应中的电子跳跃机理。 (8,0)SWCNT用于模拟实际的目标系统。发现来自氧化的AQH2基团的电子可以通过介导的SWCNT的跳跃过程转移到纳米管另一端的氧化的4AHA基团。归因于非局部电子的电子密度差异证实了这一发现。视差,部分电子密度差和Hirshfeld部分电荷分析表明,SWCNT可以容纳AQH2工艺氧化产生的假设负性中间产物的87%的额外电子密度。这两种氧化还原试剂与SWCNT的化学连接也会在带隙内引起新的杂质状态,从而为系统提供更多的金属特性。这些发现提供了对电子跳跃过程的详细理解,并与先前的实验研究非常吻合。

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