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Dual growth mode of boron nitride nanotubes in high temperature pressure laser ablation

机译:高温压力激光烧蚀中氮化硼纳米管的双重生长模式

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摘要

The morphological analysis of the end of boron nitride nanotubes (BNNTs) using high-resolution transmission electron microscopy (HR-TEM) can provide valuable insight into the growth mechanism in high temperature pressure (HTP) laser ablation where the best quality of BNNT materials can be obtained so far. Two growth modes of BNNT coexisting during the synthesis process have been proposed based on HR-TEM observation and length analysis. One is the root growth mode, in which boron nitride (BN) species formed via the surface interaction between surrounding N2 molecules and boron nanodroplets incorporate into the tubular structure. Another mode called open-end growth mode means the prolongation of tube growth from the exposed BN edge surrounding the surface of boron nanodroplets which is constructed by the heterogeneous nucleation of absorbed BN radicals from the gas plume. The statistical data, the proportions of end structures and the length of BNNTs, could be fitted to two growth modes, and the open-end growth mode is found to be especially effective in producing longer nanotubes with a higher growth rate. The scientific understanding of the growth mechanism is believed to provide the control for optimized production of BNNTs.
机译:使用高分辨率透射电子显微镜(HR-TEM)对氮化硼纳米管(BNNTs)末端进行形态分析,可以提供有价值的洞察力,从而了解高温压力(HTP)激光烧蚀的生长机理,在此机理中,BNNT材料的质量最好。至今为止。基于HR-TEM观察和长度分析,提出了在合成过程中共存的两种BNNT生长模式。一种是根生长模式,其中通过周围的N2分子和硼纳米滴之间的表面相互作用形成的氮化硼(BN)物种合并到管状结构中。称为开放末端生长模式的另一种模式是指从围绕硼纳米液滴表面的裸露BN边缘延长管的生长,这是通过从气体羽流吸收BN自由基的异质成核而建立的。统计数据,末端结构的比例和BNNT的长度可以适合两种生长模式,并且发现开放式生长模式在生产具有较高生长速率的较长纳米管时特别有效。据信对生长机制的科学理解为优化BNNT的生产提供了控制。

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