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Understanding the Selection Mechanism of the Polymer Wrapping Technique toward Semiconducting Carbon Nanotubes

Authors :
Sebastian Kowalski
Maria Cristina dos Santos
Jorge Mario Salazar-Rios
Maria Antonietta Loi
Tina Keller
Guillermo C. Bazan
Widianta Gomulya
Ming Wang
Eduard Preis
Vladimir Derenskyi
Sybille Allard
Ullrich Scherf
Martin Fritsch
Wytse Talsma
Photophysics and OptoElectronics
Source :
Small methods, 2(4):1700335. WILEY-V C H VERLAG GMBH
Publication Year :
2018

Abstract

Noncovalent functionalization of single-walled carbon nanotubes (SWNTs) using π-conjugated polymers has become one of the most effective techniques to select semiconducting SWNTs (s-SWNTs). Several conjugated polymers are used, but their ability to sort metallic and semiconducting species, as well as the dispersions yields, varies as a function of their chemical structure. Here, three polymers are compared, namely, poly[2,6-(4,4-bis-(2-dodecyl)-4H-cyclopenta[2,1-b;3,4b′]dithiophene)-alt-4,7(2,1,3-ben-zothiadiazole)] (P12CPDTBT), poly(9,9-di-n-dodecylfluorenyl-2,7-diyl) (PF12), and poly(3-dodecylthiophene-2,5-diyl) (P3DDT) in their ability to select two types of carbon nanotubes comprising small (≈1 nm) and large (≈1.5 nm) diameters. P12CPDTBT is a better dispersant than PF12 for small diameter nanotubes, while both polymers are good dispersants of large diameter nanotubes. However, these dispersions contain metallic species. P3DDT, instead presents the best overall performance regarding the selectivity toward semiconducting species, with a dispersion yield for s-SWNTs of 15% for small and 21% for large diameter nanotubes. These results are rationalized in terms of electronic and chemical structure showing that: (i) the binding energy is stronger when more alkyl lateral chains adsorb on the nanotube surface; (ii) the binding energy is stronger when the polymer backbone is more flex-ible; (iii) the purity of the dispersions seems to depend on a strong polymer– nanotube interaction.

Details

Language :
English
ISSN :
23669608
Volume :
2
Issue :
4
Database :
OpenAIRE
Journal :
Small methods
Accession number :
edsair.doi.dedup.....b3155626266ab0d57516911dddad1ed2