arXiv · 2212.05983
Measuring the Electronic Bandgap of Carbon Nanotube Networks in Non-ideal p-n Diodes
Abstract
The measurement of the bandgap in quasi-one dimensional materials such as carbon nanotubes is challenging due to its dimensionality. In this work, we measure the electronic bandgap of networks of polymer-wrapped semiconducting single-walled carbon nanotubes (s-SWCNTs) using non-ideal p-n diodes. Using these diodes, we measure the electronic bandgap and excitonic levels of different polymer-wrapped s-SWCNTs with varying diameters: arc discharge (~1.55nm), (7,5) (0.83nm), and (6,5) (0.76nm). Our values are consistent with theoretical predictions, providing insight into the fundamental properties of networks of s-SWCNTs.
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Gideon Oyibo, Thomas Barrett, Sharadh Jois, Jeffrey L. Blackburn, Ji Ung Lee. 2022-12-12. Measuring the Electronic Bandgap of Carbon Nanotube Networks in Non-ideal p-n Diodes. https://arxiv.org/abs/2212.05983
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