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Mechanical properties of defective double-walled boron nitride nanotubes for radiation shielding applications: A computational study

机译:辐射屏蔽应用有缺陷双壁硼氮化物纳米管的机械性能:计算研究

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摘要

Radiation shielding is of great importance because of the wide-spread use of nuclear radiation in various applications, such as power generation, space industries, nuclear medicine, etc. Current research focuses on developing materials with high shielding efficiency and robust mechanical properties. Boron nitride nanotubes (BNNTs) make good candidate materials for space radiation shielding applications. They are usually mixed with polymer composites to boost their mechanical properties and increase their shielding capability. Shielding can be further enhanced by adding hydrogen to the BNNT lattice, where it binds to atomic sites, or resides in vacancies. These vacancy defects can degrade the mechanical properties of the shielding materials, making them unsuitable for industrial prolonged use. In this work, we study the effect of vacancies on the mechanical properties of double-walled BNNTs (DWBNNTs). Using density functional theory, we calculate Young's modulus of defective DWBNNTs having up to 4 divacancies, in two configurations, armchair and zigzag. We find that defective armchair DWBNNTs suffer a decrease of 5-25% of their Young's moduli, while zigzag DWBNNTs show a lesser decrease of 3-15%, relative to the defect-free DWBNNTs. In addition, the divacancies cause a length contraction in the armchair case, and an ellipsoidal deformation for the zigzag one. Our findings are important for predicting of the tolerance of DWBNNTs to space radiation environment.
机译:辐射屏蔽具有重要的重要性,因为各种应用中的核辐射的广泛应用,如发电,空间行业,核医学​​等。当前研究专注于开发具有高屏蔽效率和强大的机械性能的材料。硼氮化物纳米管(BNNT)制成良好的候选材料,用于空间辐射屏蔽应用。它们通常与聚合物复合材料混合以提高其机械性能并提高其屏蔽能力。通过向BNNT晶格添加氢气可以进一步增强屏蔽,其中与原子位点结合,或者在空位中纳入空位。这些空位缺陷可以降低屏蔽材料的机械性能,使它们不适合工业长期使用。在这项工作中,我们研究了空缺对双壁BNNT(DWBNNT)的力学性能的影响。使用密度函数理论,我们计算缺陷的DWBNNT模量,可在两种配置,扶手椅和曲折中进行多达4个小公交的缺陷DWBNNT。我们发现有缺陷的扶手椅DWBNNTS占杨氏模数的5-25%,而Zigzag DWBNNTS相对于无缺陷DWBNNTS显示出3-15%的较小降低。此外,宽容在扶手椅中导致长度收缩,以及Zigzag一个的椭圆形变形。我们的发现对于预测DWBNNT对空间辐射环境的容差很重要。

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