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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Defects and Deformation of Boron Nitride Nanotubes Studied by Joint Nanoscale Mechanical and Infrared Near-Field Microscopy
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Defects and Deformation of Boron Nitride Nanotubes Studied by Joint Nanoscale Mechanical and Infrared Near-Field Microscopy

机译:联合纳米级机械和红外近场显微镜研究的氮化硼纳米管的缺陷和变形

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摘要

Boron nitride nanotubes (BNNTs) are a one-dimensional material with high mechanical strength, good electric insulation, exceptional thermal conductivity, and high temperature stability. The presence of defects and,,deformations in BNNTs at the nanoscale affects mechanical properties. In- this article, we jointly utilize nanomechanical,characterizatiOn and infrared scattering type near -field microscopy on the same individual BNNTs to study the defects and deformations. A characteristic structural defect of BNNT is revealed by a blue -shift of infrared absorption and discontinuity in adhesion. Polygonal facets have been observed: in BNNTs, as supported by their mechanical responses and spectroscopic signatures. The presence of polygon -al facets implies one should expect reactive chemical and hyperbolic optical properties of BNNTs.
机译:氮化硼纳米管(BNNT)是一维材料,具有较高的机械强度,良好的电绝缘性,出色的导热性和高温稳定性。纳米级的BNNT中缺陷和变形的存在会影响机械性能。在本文中,我们在相同的单个BNNT上共同利用纳米力学,特性和红外散射型近场显微镜研究了缺陷和变形。 BNNT的特征性结构缺陷通过红外吸收的蓝移和粘附的不连续性得以揭示。已观察到多边形小面:在BNNT中,其机械响应和光谱特征得到支持。多边形小面的存在意味着人们应该期待BNNT的反应化学和双曲光学性质。

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