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Tuning the electronic properties by width and length modifications of narrow-diameter carbon nanotubes for nanomedicine

机译:通过窄直径碳纳米管的宽度和长度修改来调节电子性质,用于纳米药物

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摘要

The distinctive characteristics of nanoparticles, resulting from properties that arise at the nano-scale, underlie their potential applications in the biomedical sector. However, the very same characteristics also result in widespread concerns about the potentially toxic effects of nanoparticles. Given the large number of nanoparticles that are being developed for possible biomedical use, there is a need to develop rapid screening methods based on in silico methods. This study illustrates the application of conceptual Density Functional Theory (DFT) to some carbon nanotubes (CNTs) optimized by means of static DFT calculations. The computational efforts are focused on the geometry of a family of packed narrow-diameter carbon nanotubes (CNTs) formed by units from four to twelve carbons evaluating the strength of the C-C bonds by means of Mayer Bond Orders (MBO). Thus, width and length are geometrical features that might be used to tune the electronic properties of the CNTs. At infinite length, partial semi-conductor characteristics are expected.
机译:纳米级的独特特性是由于其在纳米尺度上产生的特性而产生的,这为其在生物医学领域的潜在应用奠定了基础。然而,非常相同的特性也导致人们对纳米颗粒的潜在毒性作用产生广泛的担忧。考虑到正在开发用于可能的生物医学用途的大量纳米颗粒,需要开发基于计算机模拟方法的快速筛选方法。这项研究说明了概念密度泛函理论(DFT)在通过静态DFT计算优化的某些碳纳米管(CNT)上的应用。计算工作集中在通过四到十二个碳的单元形成的一系列堆积的窄直径碳纳米管(CNT)的几何形状,这些碳纳米管通过Mayer键阶(MBO)评估C-C键的强度。因此,宽度和长度是可以用来调节CNT的电子性质的几何特征。在无限长的情况下,预计会有部分半导体特性。

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