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Effects of surface functionalization on the electronic and structural properties of carbon nanotubes: A computational approach

机译:表面功能化对碳纳米管电子和结构性质的影响:一种计算方法

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摘要

Carbon nanotubes (CNTs) have important electronic, mechanical and optical properties. These features may be different when comparing a pristine nanotube with other presenting its surface functionalized. These changes can be explored in areas of research and application, such as construction of nanodevices that act as sensors and filters. Following this idea, in the current work, we present the results from a systematic study of CNT's surface functionalized with hydroxyl and carboxyl groups. Using the entropy as selection criterion, we filtered a library of 10k stochastically generated complexes for each functional concentration (5,10,15, 20 and 25%). The structurally related parameters (root-mean-square deviation, entropy, and volume/area) have a monotonic relationship with functionalization concentration. Differently, the electronic parameters (frontier molecular orbital energies, electronic gap, molecular hardness, and electrophilicity index) present and oscillatory behavior. For a set of concentrations, the nanotubes present spin polarized properties that can be used in spintronics. (C) 2017 Elsevier B.V. All rights reserved.
机译:碳纳米管(CNT)具有重要的电子,机械和光学特性。将原始纳米管与其他表面功能化的纳米管进行比较时,这些功能可能会有所不同。可以在研究和应用领域中探索这些变化,例如构造充当传感器和过滤器的纳米设备。遵循这个想法,在当前的工作中,我们介绍了系统研究羟基和羧基官能化的CNT表面的结果。使用熵作为选择标准,我们针对每种功能浓度(5%,10%,15%,20%和25%)筛选了10k个随机生成的复合物的库。结构上相关的参数(均方根偏差,熵和体积/面积)与功能化浓度具有单调关系。不同的是,存在电子参数(前沿分子轨道能量,电子间隙,分子硬度和亲电指数)和振荡行为。对于一组浓度,纳米管具有可在自旋电子学中使用的自旋极化特性。 (C)2017 Elsevier B.V.保留所有权利。

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