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Epitaxial nucleation model for chiral-selective growth of single-walled carbon nanotubes on bimetallic catalyst surfaces

机译:双金属催化剂表面上单壁碳纳米管手性选择性生长的外延成核模型

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摘要

An epitaxial nucleation model for single-walled carbon nanotube (SWCNT) growth on bimetallic catalysts surfaces is reported in support of experimental observations of chiral enrichment. We model the bimetallic catalyst surfaces as a 2D (111) surface consisting of Ni or a combination of Ni and Fe atoms, with varying average bond length between nearest neighbor atoms which corresponds to the crystal structure of the alloys. The energies associated with nanotube cap formation on these various surfaces are calculated using density functional theory (DFT). We find that certain cap chiralities, such as (8,4), are more stably bound to a surface that resembles a Ni_(0.27)Fe_(0.73) bimetallic catalyst, whereas other chiralities, such as (9,4), are more stable on a pure Ni surface. These results help explain the predominance of certain chiralities on specific bimetallic catalysts and provide a potential route to controlling the chirality of as-grown SWCNTs.
机译:报道了在双金属催化剂表面上单壁碳纳米管(SWCNT)生长的外延成核模型,以支持手性富集的实验观察。我们将双金属催化剂表面建模为2D(111)表面,该表面由Ni或Ni和Fe原子的组合组成,最近的相邻原子之间的平均键长发生变化,这与合金的晶体结构相对应。使用密度泛函理论(DFT)计算与在这些不同表面上形成纳米管帽相关的能量。我们发现某些盖帽手性,例如(8,4),更稳定地结合到类似于Ni_(0.27)Fe_(0.73)双金属催化剂的表面,而其他手性,例如(9,4),则更多在纯镍表面上稳定。这些结果有助于解释某些手性在特定双金属催化剂上的优势,并为控制生长中的SWCNTs的手性提供了一条潜在途径。

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