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Carbon nanoparticle surface functionalisation: Converting negatively charged sulfonate to positively charged sulfonamide

Abstract:
The surface functionalities of commercial sulfonate-modified carbon nanoparticles (ca. 9-18 nm diameter, Emperor 2000) have been converted from negatively charged to positively charged via sulfonylchloride formation followed by reaction with amines to give suphonamides. With ethylenediamine, the resulting positively charged carbon nanoparticles exhibit water solubility (in the absence of added electrolyte), a positive zeta-potential, and the ability to assemble into insoluble porous carbon films via layer-by-layer deposition employing alternating positive and negative carbon nanoparticles. Sulfonamide-functionalised carbon nanoparticles are characterised by Raman, AFM, XPS, and voltammetric methods. Stable thin film deposits are formed on 3 mm diameter glassy carbon electrodes and cyclic voltammetry is used to characterise capacitive background currents and the adsorption of the negatively charged redox probe indigo carmine. The Langmuirian binding constant K = 4000 mol -1dm3 is estimated and the number of positively charged binding sites per particle determined as a function of pH. © the Owner Societies.

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Publisher copy:
10.1039/b927434k

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Journal:
Physical Chemistry Chemical Physics More from this journal
Volume:
12
Issue:
18
Pages:
4872-4878
Publication date:
2010-01-01
DOI:
ISSN:
1463-9076


Language:
English
Pubs id:
pubs:95253
UUID:
uuid:bb0d0927-9070-4833-a1a3-d6644202fb4d
Local pid:
pubs:95253
Source identifiers:
95253
Deposit date:
2012-12-19
ARK identifier:

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