2011
DOI: 10.1002/elan.201100051
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Carbon Nanoparticle Surface Electrochemistry: High‐Density Covalent Immobilisation and Pore‐Reactivity of 9,10‐Anthraquinone

Abstract: 2-Bromomethyl-9,10-anthraquinone is covalently bound to carbon nanoparticle surfaces (Emperor 2000, Cabot Corp., with sulphonamide groups, ca. 9 to 18 nm diameter) with a coverage of ca. 250 anthraquinone molecules per particle (ca. 180 2 per anthraquinone). The resulting hydrophobic carbon particles are dispersed in ethanol and coated onto glassy carbon electrodes. Electrochemical experiments are reported demonstrating the effect of surface coverage, scan rate, and pH. A linear shift in reversible potential o… Show more

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Cited by 22 publications
(11 citation statements)
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References 28 publications
(33 reference statements)
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“…Carbon black was covalently modified by transforming the sulfonyl chloride into a series of sulfonamides. The introduction of amine groups (-NH 2 ) onto the surface of CB nanoparticles was achieved by first activating the sulfonate with thionyl chloride, then adding ethylene diamine [21]. 0.25g of CB-SO 3 Na (1) in 15 mL of dichloromethane (DCM) was sonicated for 20 mins in a round bottom flask where it was sparged with argon gas, and cooled to 0 °C.…”
Section: Fig 3 -Reaction Scheme For the Amination Of Cb-so 3 Namentioning
confidence: 99%
“…Carbon black was covalently modified by transforming the sulfonyl chloride into a series of sulfonamides. The introduction of amine groups (-NH 2 ) onto the surface of CB nanoparticles was achieved by first activating the sulfonate with thionyl chloride, then adding ethylene diamine [21]. 0.25g of CB-SO 3 Na (1) in 15 mL of dichloromethane (DCM) was sonicated for 20 mins in a round bottom flask where it was sparged with argon gas, and cooled to 0 °C.…”
Section: Fig 3 -Reaction Scheme For the Amination Of Cb-so 3 Namentioning
confidence: 99%
“…phenylsulphonate-functionalised carbon nanoparticles known as Emperor 2000, Cabot Corp.) and are attracting renewed attention for electrochemical systems [12,13]. We have recently demonstrated anthraquinonefunctionalised carbon nanoparticles [14], dopylated carbon nanoparticles for gas sensing [15], and dioctylamine functionalised carbon nanoparticles as nano-supports for lipids [16].…”
Section: Introductionmentioning
confidence: 99%
“…The latter change opens the way to other modifications, not possible with original phenylsulfonated CNPs. For example, ammonium functionalities 12 were used to covalently attach the anthraquinone 16 or L‐dopa‐boronic acid 17 units (Fig. 2).…”
Section: Carbon Nanoparticles Functionalisationmentioning
confidence: 99%