Ferrocene was covalently bonded to a layer of adsorbed single-walled carbon nanotubes on a glassy carbon electrode surface using electrochemical grafting and click chemistry. Grafting of the 4-azidobenzenediazonium salt onto the surface was accomplished by electrochemical reduction. The surface-bound azide groups, with the use of a copper(I) catalyst, were reacted with ethynylferrocene to form covalent 1,2,3-triazole bonds by click chemistry. This layer by layer construction of the electrode surface results in stable electrodes by combining good electrical conductivity and increased surface area of the nanotubes with the versatility of the Sharpless click reaction
International audienceImproving graphene-based electrode fabrication processes and developing robust...
Postfunctionalization of glassy carbon electrodes previously modified by reduction of 4-azidobenzene...
This thesis reports upon the covalent attachment of 6 different types of linkers bearing the Boc pro...
A glassy carbon electrode was modified by adsorption of single-walled carbon nanotubes, followed by ...
We propose in this work to compare three approaches using 4-azidoaniline combined with “click” chemi...
We report on the surface micropatterning of conductive surfaces via the electrochemical triggering o...
One form of surface modification was primarily investigated in this work on glassy carbon electrodes...
International audienceCarbon nanotube electrodes were modified with ferrocene and laccase using two ...
International audienceMajor challenges in the design of devices based on self-assembled monolayers (...
International audienceImproving graphene-based electrode fabrication processes and developing robust...
Postfunctionalization of glassy carbon electrodes previously modified by reduction of 4-azidobenzene...
This thesis reports upon the covalent attachment of 6 different types of linkers bearing the Boc pro...
A glassy carbon electrode was modified by adsorption of single-walled carbon nanotubes, followed by ...
We propose in this work to compare three approaches using 4-azidoaniline combined with “click” chemi...
We report on the surface micropatterning of conductive surfaces via the electrochemical triggering o...
One form of surface modification was primarily investigated in this work on glassy carbon electrodes...
International audienceCarbon nanotube electrodes were modified with ferrocene and laccase using two ...
International audienceMajor challenges in the design of devices based on self-assembled monolayers (...
International audienceImproving graphene-based electrode fabrication processes and developing robust...
Postfunctionalization of glassy carbon electrodes previously modified by reduction of 4-azidobenzene...
This thesis reports upon the covalent attachment of 6 different types of linkers bearing the Boc pro...