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Multi-and single-walled boron nitride nanotubes produced from carbon nanotubes y a substitution reaction

机译:由碳纳米管Y产生的多壁硼氮化物纳米管替代反应

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Boron nitride (BN) multi-walled (MWNT) or single-walled (SWNT) nanotubes were synthesized from carbon MWNT and SWNT templates, respectively, under heating of C nanotubes together with boron trioxide in a flowing nitrogen atmosphere. B and N atom substitution for C atoms in the nanotubular shells during C oxidation by the B{sub}2O{sub}3 vapor in the N{sub}2 flow is thought to underlie the formation mechanism. Structural and chemical BN MWNT/SWNT analyses were performed by means of high-resolution electron microscopy (HRTEM) and electron energy loss spectroscopy (EELS), respectively. In particular, BN MWNT shell structure and defects, and electron irradiation stability were studied. Finally, the prospects of using the substitution technique for the synthesis of other advanced nanostructures made of BN (nanorods, nanoplates and nanocones) are discussed.
机译:氮化硼(BN)多壁(MWNT)或单壁(SWNT)纳米管分别由碳MWNT和SWNT模板合成,在流动的氮气氛中加热C纳米管和三氧化硼。 B和N原子取代在纳管壳中的C氧化物中的C氧化物在N {Sub} 2中的3℃下的氧化物中的v蒸气被认为是形成机制的基础。通过分别高分辨率电子显微镜(HRTEM)和电子能量损失光谱(EEL)进行结构和化学BN MWNT / SWNT分析。特别地,研究了BN MWNT壳结构和缺陷,以及电子照射稳定性。最后,讨论了使用用于合成由BN(纳米棒,纳米层,纳米载体)制成的其他先进纳米结构的替代技术的前景。

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