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Aggregation-dependent photoluminescence sidebands in single-walled carbon nanotube
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Aggregation-dependent photoluminescence sidebands in single-walled carbon nanotube

Li Wei, Lain-Jong Li, Mary B. Chan-Park, Yanhui YangYuan Chen
Journal of Physical Chemistry C, 卷.114(14), 頁碼.6704-6711
04/2010

摘要

Electronic Optical and Magnetic Materials Energy (all) Physical and Theoretical Chemistry Surfaces Coatings and Films
Aggregation of single-walled carbon nanotubes (SWCNTs) is one of the major obstacles for many nanotube fundamental studies and practical applications, such as nanocomposites, electronic devices, bioimaging, biosensors, and drug-delivery. In this study, two types of SWCNT samples, enriched with (6,5) and (7,5) chiral structures, respectively, were investigated. SWCNT suspensions containing various fractions of bundles were obtained by ultracentrifugation. Dialysis was used to achieve the controlled nanotube rebundling. Results showed that SWCNT photoluminescence (PL) sidebands (the transverse sideband E 12,21 , the phonon coupled sidebands E 22 + G,G′, and the E 33 → E 11 emission band) are dependent on the nanotube aggregation. We proposed that SWCNT exciton relaxation routes increase upon nanotube aggregation, resulting in the suppression of primary PL peaks and the enhancement of PL sidebands. Furthermore, the correlation between PL sidebands and nanotube aggregation was also demonstrated in diverse dispersion conditions involving different surfactants and solvents. These results highlight the potential of employing PL sidebands as a sensitive characterizing tool to monitor the nanotube aggregation under different circumstances. © 2010 American Chemical Society.

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