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Importance of Diameter Control on Selective Synthesis of Semiconducting Single-Walled Carbon Nanotubes

机译:直径控制对半导体单壁碳纳米管选择性合成的重要性

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The coexistence of semiconducting and metallic single-walled carbon nanotubes (SWNTs) during synthesis is one of the major bottlenecks that prevent their broad application for the next-generation nanoelectronics. Herein, we present more understanding and demonstration of the growth of highly enriched semiconducting SWNTs (s-SWNTs) with a narrow diameter distribution. An important fact discovered in our experiments is that the selective elimination of metallic SWNTs (m-SWNTs) from the mixed arrays grown on quartz is diameter-dependent. Our method emphasizes controlling the diameter distribution of SWNTs in a narrow range where m-SWNTs can be effectively and selectively etched during growth. In order to achieve narrow diameter distribution, uniform and stable Fe-W nanoclusters were used as the catalyst precursors. About 90% of as-prepared SWNTs fall into the diameter range 2.0-3.2 nm. Electrical measurement results on individual SWNTs confirm that the selectivity of s-SWNTs is ~95%. The present study provides an effective strategy for increasing the purity of s-SWNTs via controlling the diameter distribution of SWNTs and adjusting the etchant concentration. Furthermore, by carefully comparing the chirality distributions of Fe-W-catalyzed and Fe-catalyzed SWNTs under different water vapor concentrations, the relationship between the diameter-dependent and electronic-type-dependent etching mechanisms was investigated.
机译:半导体和金属单壁碳纳米管(SWNT)在合成过程中的共存是阻碍其在下一代纳米电子学中广泛应用的主要瓶颈之一。在本文中,我们提出了对直径分布窄的高浓缩半导体单壁碳纳米管(s-SWNTs)增长的更多理解和证明。在我们的实验中发现的一个重要事实是,从石英上生长的混合阵列中选择性去除金属单壁碳纳米管(m-SWNT)与直径有关。我们的方法强调将SWNT的直径分布控制在一个狭窄的范围内,在生长过程中可以有效且选择性地蚀刻m-SWNT。为了获得窄的直径分布,将均匀且稳定的Fe-W纳米团簇用作催化剂前体。大约90%的制得的单壁碳纳米管的直径范围为2.0-3.2 nm。单个SWNTs的电学测量结果证实,s-SWNTs的选择性为〜95%。本研究提供了通过控制单壁碳纳米管的直径分布和调节蚀刻剂浓度来提高s-SWNTs纯度的有效策略。此外,通过仔细比较在不同水蒸气浓度下Fe-W催化和Fe催化的SWNTs的手性分布,研究了直径依赖性和电子类型依赖性蚀刻机理之间的关系。

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