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Large-Scale Fabrication of Boron Nitride Nanotubes via a Facile Chemical Vapor Reaction Route and Their Cathodoluminescence Properties

机译:通过简便的化学气相反应路线大规模制备氮化硼纳米管及其阴极发光性质

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摘要

Cylinder- and bamboo-shaped boron nitride nanotubes (BNNTs) have been synthesized in large scale via a facile chemical vapor reaction route using ammonia borane as a precursor. The structure and chemical composition of the as-synthesized BNNTs are extensively characterized by X-ray diffraction, scanning electron microscopy, high-resolution transmission electron microscopy, and selected-area electron diffraction. The cylinder-shaped BNNTs have an average diameter of about 100 nm and length of hundreds of microns, while the bamboo-shaped BNNTs are 100–500 nm in diameter with length up to tens of microns. The formation mechanism of the BNNTs has been explored on the basis of our experimental observations and a growth model has been proposed accordingly. Ultraviolet–visible and cathodoluminescence spectroscopic analyses are performed on the BNNTs. Strong ultraviolet emissions are detected on both morphologies of BNNTs. The band gap of the BNNTs are around 5.82 eV and nearly unaffected by tube morphology. There exist two intermediate bands in the band gap of BNNTs, which could be distinguishably assigned to structural defects and chemical impurities.
机译:圆筒形和竹形的氮化硼纳米管(BNNT)已通过使用氨硼烷作为前体的简便化学气相反应路线进行了大规模合成。通过X射线衍射,扫描电子显微镜,高分辨率透射电子显微镜和选择区域电子衍射广泛地表征了所合成的BNNT的结构和化学组成。圆柱状BNNT的平均直径约为100 nm,长度为数百微米,而竹状BNNT的直径为100–500 nm,长度可达数十微米。在我们的实验观察的基础上,探索了BNNTs的形成机理,并据此提出了生长模型。在BNNT上进行紫外可见光谱和阴极荧光光谱分析。在两种BNNT形态上均检测到强紫外线发射。 BNNT的带隙约为5.82 eV,几乎不受管形貌的影响。 BNNT的带隙中存在两个中间带,可以区分为结构缺陷和化学杂质。

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