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Theoretical investigation of the divacancies in boron nitride nanotubes: Properties and surface reactivity toward various adsorbates

机译:氮化硼纳米管中空位的理论研究:性质和对各种吸附物的表面反应性

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摘要

The recent study has shown that the point defects formed under electron irradiation in the boron nitride nanotubes (BNNTs) are primarily BN divacancies. In the present work, we explore the properties of BNNTs with divacancies and estimate their surface reactivity toward various adsorbates through density functional theory calculations. Divacancies in BNNTs can self-heal by spontaneously reconstructing stable structures that have two pentagons side by side with an octagon (585). The formation energ#ies, which strongly depend on the divacancy orientation with respect to the tube axis, increase with increasing tube diameters. Compared to the reactivity of the perfect BNNT, those sites near the divacancies have a higher reactivity due to the formation of frustrated B-B and N-N bonds and the local strain induced by pentagonal and octagonal rings. The present results might be useful for deeply understanding the nature of defects in BNNTs and rendering BNNTs promising for many applications, especially in nanoelectronics.
机译:最近的研究表明,在电子辐照下,氮化硼纳米管(BNNT)中形成的点缺陷主要是BN的空位。在目前的工作中,我们探索具有空位的BNNTs的性质,并通过密度泛函理论计算来估计其对各种吸附物的表面反应性。 BNNT中的异常可以通过自发重建具有两个五边形与一个八边形并排的稳定结构来自我修复(585)。地层能量主要取决于相对于管轴的空位取向,并随管直径的增加而增加。与完全BNNT的反应性相比,由于形成受阻的B-B和N-N键以及五角形和八角形环引起的局部应变,在双空位附近的那些位点具有更高的反应性。目前的结果可能有助于深入了解BNNT中缺陷的性质,并使BNNT在许多应用中具有前景,特别是在纳米电子领域。

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