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High-Yield Synthesis of Boron Nitride Nanoribbons via Longitudinal Splitting of Boron Nitride Nanotubes by Potassium Vapor

机译:钾汽化法纵向分解氮化硼纳米管的高产率合成氮化硼纳米带

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摘要

Boron nitride nanoribbons (BNNRs) are theorized to have interesting electronic and magnetic properties, but their high-yield synthesis remains challenging. Here we demonstrate that potassium-induced splitting of BN nanotubes (BNNTs) is an effective high-yield method to obtain bulk quantities of high-quality BNNRs if a proper precursor material is chosen. The resulting BNNRs are crystalline; many of them have a high aspect ratio and straight parallel edges. We have observed numerous few-layer and monolayer BNNRs; the multilayered ribbons predominantly have an AA0 stacking. We present a detailed microscopy study of BNNRs that provides important insights into the mechanism of the formation of BNNRs from BNNTs. We also demonstrate that the BNNTs prepared by different synthetic approaches could exhibit dramatically different reactivities in the potassium splitting reaction, which highlights the need for future comparison studies of BN nanomaterials prepared using different methods to better understand their preparation-dependent physical and chemical properties.
机译:氮化硼纳米带(BNNRs)在理论上具有有趣的电子和磁性,但其高产率合成仍然具有挑战性。在这里,我们证明了钾诱导的BN纳米管(BNNTs)裂解是一种有效的高产率方法,如果选择了合适的前体材料,则可以获得大量的高质量BNNR。所得的BNNR是结晶的。它们中的许多具有高纵横比和笔直的平行边缘。我们已经观察到许多无数的单层BNNR。多层色带主要具有AA0堆叠。我们目前对BNNRs进行详细的显微镜研究,从而为从BNNTs形成BNNRs的机理提供重要见解。我们还证明了通过不同的合成方法制备的BNNTs在钾分解反应中可能表现出显着不同的反应性,这突出表明了需要对未来使用不同方法制备的BN纳米材料进行比较研究以更好地了解其依赖于制剂的物理和化学性质的研究。

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