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Polyyne Ring Nucleus Growth Model for Single-Layer Carbon Nanotubes

机译:单层碳纳米管的Polyyne环核生长模型

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摘要

We propose, based on recent experimental results, a polyyne ring nucleus (PRN) growth model for the synthesis of single-layer nanotubes (SLN's). The PRN model assumes that (i) the critical nuclei are the planar carbon polyyne rings that are observed to be most stable for sizes in the range C10 to C40; (ii) ComCn clusters (possibly charged) play the role of a catalyst by serving to add C2 or other gas phase species into the growing tube; (iii) promoters such as S, Bi, and Pb serve to modify the rates for these processes by stabilizing the ring structure. We suggest experiments to test and amplify this PRN model, including a flow tube arrangement that might be useful for synthesizing more uniform SLN's.
机译:基于最近的实验结果,我们提出用于单层纳米管(SLN's)合成的聚炔环核(PRN)生长模型。 PRN模型假设(i)关键核是平面碳聚炔环,对于C10至C40范围的尺寸,该环最稳定。 (ii)ComCn簇(可能带电)通过将C2或其他气相物质添加到生长管中而起到催化剂的作用; (iii)诸如S,Bi和Pb的启动子通过稳定环结构来改变这些过程的速率。我们建议进行实验以测试和放大此PRN模型,包括可能对合成更均匀的SLN有用的流管布置。

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