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Supergrowth of nitrogen-doped single-walled carbon nanotube arrays: Active species, dopant characterization, and doped/undoped heterojunctions

机译:氮掺杂单壁碳纳米管阵列的超生长:活性物种,掺杂剂表征以及掺杂/未掺杂异质结

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We demonstrate the water-assisted supergrowth of vertically aligned single-walled carbon-nitrogen nanotubes (SWNNTs) using a simple liquid/gas-phase precursor system. In situ characterization of gas-phase nitrogen-containing precursors and their correlation to growth identifies HCN as the most active precursor for SWNNT growth, analogous to C_2H_2 for single-walled carbon nanotubes (SWNTs). Utilizing Raman spectroscopy, combined with XPS and in situ mass spectrometry during growth, we demonstrate the ability to probe N atoms at low concentrations (10~(-5) at. % N) in the SWNNT. Additionally, we demonstrate sensitivity of SWNNT optical transitions to N-doping through absorbance measurements, which appear to be a sensitive fingerprint for SWNNT doping. Finally, we demonstrate the fabrication of SWNT/SWNNT heterojunctions in the self-assembled carpet morphology that can be printed to arbitrary host substrates and facilitate potential emerging applications for this material. This work brings together new aspects regarding the growth, characterization, and materials processing that can yield advanced material architectures involving electronically tuned SWNNT array networks.
机译:我们演示了使用简单的液相/气相前体系统的垂直排列的单壁碳氮纳米管(SWNNTs)的水辅助超生长。气相含氮前体的原位表征及其与生长的相关性将HCN识别为SWNNT生长最活跃的前体,类似于单壁碳纳米管(SWNT)的C_2H_2。利用拉曼光谱,结合XPS和生长过程中的原位质谱,我们证明了探测SWNNT中低浓度(N浓度为10〜(-5)%N)的N原子的能力。此外,我们通过吸光度测量证明了SWNNT光学跃迁对N掺杂的敏感性,这似乎是SWNNT掺杂的敏感指纹。最后,我们演示了自组装地毯形态中SWNT / SWNNT异质结的制造,可以将其印刷到任意基质上,并促进该材料的潜在新兴应用。这项工作汇集了有关生长,表征和材料处理的新方面,这些方面可以产生涉及电子调谐SWNNT阵列网络的高级材料架构。

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