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Carbon nanobuds based on carbon nanotube caps: a first-principles study

机译:基于碳纳米管的碳nanobuds帽:采用基于研究

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摘要

Based on density functional theory calculations, we here show that the formation of a fullerene C-60 carbon "nanobud" (CNB) on carbon nanotube (CNT) caps is energetically more favorable than that on CNT sidewalls. The dominant CNB formation mode for CNT caps is found to be the [2 + 2] cycloaddition reaction as in the conventional CNT sidewall case. However, it is identified to be exothermic in contrast to the endothermic reaction on CNT sidewalls. Computed reaction pathways further demonstrate that the formation (dissociation) barrier for the CNT cap-based CNB is slightly lower (significantly higher) than that of the CNT sidewall-based CNB, indicating an easier CNB formation as well as a higher structural stability. Additionally, performing matrix Green's function calculations, we study the charge transport properties of the CNB/metal electrode interfaces, and show that the C-60 bonding to the CNT cap or open end induces resonant transmissions near the Fermi level. It is also found that the good electronic linkage in the CNT cap-C-60 cycloaddition bonds results in the absence of quantum interference patterns, which contrasts with the case of the CNB formed on an open-ended CNT that shows a Fano resonance profile.
机译:基于密度泛函理论计算,我们在这里证明富勒烯的形成C-60碳“nanobud”(CNB)在碳纳米管上(问)帽是积极有利的多胎侧问。模式发现问帽的[2 + 2]环加成反应在传统的问侧壁。在与吸热放热反应在胎侧问。途径进一步证明形成(分离)问cap-based CNB屏障(更高)略低于问sidewall-based CNB,指示一个容易CNB形成以及更高结构稳定性。矩阵格林函数的计算,我们的研究的电荷传输性质CNB /金属C-60电极接口,并显示结合问帽或开口的诱发费米能级附近的共振传输。也发现电子链接好吗问cap-C-60环加成反应导致债券没有量子干涉模式的情况下,这与CNB形成的情况下在一个开放式的问,显示了范诺共振概要文件。

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