Capillary electrophoresis of covalently functionalized single‐chirality carbon nanotubes

Abstract

We demonstrate the separation of chirality‐enriched single‐walled carbon nanotubes (SWCNTs) by degree of surface functionalization using high‐performance CE. Controlled amounts of negatively charged and positively charged functional groups were attached to the sidewall of chirality‐enriched SWCNTs through covalent functionalization using 4‐carboxybenzenediazonium tetrafluoroborate or 4‐diazo‐N,N‐diethylaniline tetrafluoroborate, respectively. Surfactant‐ and pH‐dependent studies confirmed that under conditions that minimized ionic screening effects, separation of these functionalized SWCNTs was strongly dependent on the surface charge density introduced through covalent surface chemistry. For both heterogeneous mixtures and single‐chirality‐enriched samples, covalently functionalized SWCNTs showed substantially increased peak width in electropherogram spectra compared to nonfunctionalized SWCNTs, which can be attributed to a distribution of surface charges along the functionalized nanotubes. Successful separation of functionalized single‐chirality SWCNTs by functional density was confirmed with UV‐Vis‐NIR absorption and Raman scattering spectroscopies of fraction collected samples. These results suggest a high degree of structural heterogeneity in covalently functionalized SWCNTs, even for chirality‐enriched samples, and show the feasibility of applying CE for high‐performance separation of nanomaterials based on differences in surface functional density.

Document Details

Document Type
Pub Defense Publication
Publication Date
Apr 20, 2017
Source ID
10.1002/elps.201600570

Entities

People

  • Brendan Meany
  • Chunyan Wang
  • H. Kwon
  • Pingli He
  • Shunliu Deng
  • Yanmei Piao
  • YuHuang Wang

Organizations

  • Air Force Office of Scientific Research
  • University of Maryland
  • Xiamen University

Tags

Readers

  • Mathematics or Statistics
  • Nanocomposite Materials Science
  • Polymer Science and Technology