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Effect of chemical modification on electronic transport properties of carbyne

机译:化学改性对卡布恩电子传输性质的影响

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Using density functional theory in combination with the Green's functional formalism, we study the effect of surface functionalization on the electronic transport properties of 1D carbon allotrope-carbyne. We found that both hydrogenation and fluorination result in structural changes and semiconducting to metallic transition. Consequently, the current in the functionalization systems increases significantly due to strong delocalization of electronic states along the carbon chain. We also study the electronic transport in partially hydrogenated carbyne and interface structures consisting of pristine and functionalized carbyne. In the latter case, current rectification is obtained in the system with rectification ratio up to 50%. These findings can be useful for developing carbyne-based structures with tunable electronic transport properties.
机译:利用密度函数理论与绿色的功能形式主义相结合,研究了表面官能化对1D碳交换机 - 卡骨电子传输性能的影响。我们发现氢化和氟化均导致结构变化和半导体对金属转变。因此,由于沿着碳链的强烈的电子国家的临时化,功能化系统中的电流显着增加。我们还研究了部分氢化的卡比和由原始和官能化的Carbyne组成的界面结构的电子传输。在后一种情况下,在系统中获得电流整流,整流比率高达50%。这些发现对于使用可调谐电子传输性能开发基于卡拿的结构。

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