Title:
Fermi energy shift in deposited metallic nanotubes
Subtitle:
a Raman scattering study
Author(s):
Hatting, Benjamin; Heeg, Sebastian; Ataka, Kenichi; Heberle, Joachim; Hennrich, Frank; Kappes, Manfred M.; Krupke, Ralph; Reich, Stephanie
Year of publication:
2013
Available Date:
2014-03-03
Abstract:
The longitudinal optical phonon of metallic nanotubes shifts by 23 cm−1 to
lower energies when the nanotubes are deposited from a solution onto a
substrate. The linewidth increases by 13 cm−1. The changes are explained in
terms of shifts in the Fermi energy that influence the Kohn anomaly in the
longitudinal optical phonon branch in metallic nanotubes. Using in situ
electrochemical Raman measurements we show that the Fermi energy is 0.16 eV
below its intrinsic value in metallic nanotubes in solution. Our results
impact the application of Raman spectroscopy to distinguish between metallic
and semiconducting tubes by examining the high-energy mode line shape.
Part of Identifier:
ISSN (print): 1098-0121
DDC-Classification:
530 Physik
Publication Type:
Wissenschaftlicher Artikel
Also published in:
Physical Review B. - 87 (2013), 16, Artikel Nr. 165442(5)
URL of the Original Publication:
DOI of the Original Publication:
Department/institution:
Physik
Institut für Experimentalphysik
Comments:
Der Artikel wurde in einer Open-Access-Zeitschrift publiziert.