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Electrodynamic and excitonic intertube interactions in semiconducting carbon nanotube aggregates

  • Jared John Crochet
  • , Jay D. Sau
  • , Juan G. Duque
  • , Stephen K Doorn
  • , Marvin L. Cohen

Research output: Contribution to journalArticlepeer-review

47 Scopus citations

Abstract

The optical properties of selectively aggregated, nearly single chirality single-wall carbon nanotubes were investigated by both continuous-wave and time-resolved spectroscopies. With reduced sample heterogeneities, we have resolved aggregation-dependent reductions of the excitation energy of the S 1 exciton and enhanced electron-hole pair absorption. Photoluminescence spectra revealed a spectral splitting of S1 and simultaneous reductions of the emission efficiencies and nonradiative decay rates. The observed strong deviations from isolated tube behavior are accounted for by enhanced screening of the intratube Coulomb interactions, intertube exciton tunneling, and diffusion-driven exciton quenching. We also provide evidence that density gradient ultracentrifugation can be used to structurally sort single-wall carbon nanotubes by aggregate size as evident by a monotonic dependence of the aforementioned optical properties on buoyant density.

Original languageEnglish
Pages (from-to)2611-2618
Number of pages8
JournalACS Nano
Volume5
Issue number4
DOIs
StatePublished - Apr 26 2011

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