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Self-assembly of a parallelogram black phosphorus ribbon into a nanotube

机译:将平行四边形黑磷带自组装为纳米管

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摘要

A nanotube from single-layer black phosphorus (BP) has never been discovered in experiments. The present study proposed a method for the fabrication of a BP nanotube (BPNT) from a parallelogram nanoribbon self-assembled on a carbon nanotube (CNT). The nanoribbon has a pair of opposite sides along the third principal direction. According to the numerical simulation via molecular dynamics approach, we discover that a wider BP nanoribbon can form into a series of chiral nanotube by self-assembly upon CNTs with different radii. The radius of a BPNT from the same ribbon has a wide range, and depends on both geometry of the ribbon and the CNT. One can obtain a BPNT with the specified radius by placing the ribbon nearby a given CNT. The method provides a clue for potential fabrication of BPNTs.
机译:在实验中从未发现过由单层黑磷(BP)制成的纳米管。本研究提出了一种由自组装在碳纳米管(CNT)上的平行四边形纳米带制造BP纳米管(BPNT)的方法。纳米带沿第三主方向具有一对相对的侧面。根据通过分子动力学方法进行的数值模拟,我们发现更宽的BP纳米带可以通过自组装在具有不同半径的CNT上形成一系列手性纳米管。来自同一条带的BPNT的半径范围很广,并且取决于带和CNT的几何形状。通过将碳带放置在给定的CNT附近,可以获得具有指定半径的BPNT。该方法为潜在制造BPNT提供了线索。

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