Here we report on the functionalization of alkyne-terminated alkyl monolayers on highly doped Si(100) using "click" reactions to immobilize ferrocene derivatives. The reaction of hydrogen-terminated silicon surfaces with a diyne species was shown to afford very robust functional surfaces where the oxidation of the underlying substrate was negligible. Detailed characterization using X-ray photoelectron spectroscopy, X-ray reflectometry, and cyclic voltammetry demonstrated that the surface acetylenes had reacted in moderate yield to give surfaces exposing ferrocene moieties. Upon extensive exposure of the redox-active architecture to oxidative environments during preparative and characterization steps, no evidence of SiOx contaminants was sho...
We prepared ferrocene-modified silicon surfaces through a three-step procedure consisting of the pho...
A reversible electrochemical behavior is demonstrated on a specially prepared redox-functionalized H...
Light-activated electrochemistry is a powerful concept, where faradaic electrochemistry at a monolay...
Here we report on the functionalization of alkyne-terminated alkyl monolayers on highly doped Si(100...
A novel method to prepare redox monolayers on silicon electrodes has been developed that employs CuI...
The thesis presents the research results obtained while studying novel chemical strategies for prepa...
We report on an exceedingly mild chemical functionalization of hydrogen-terminated Si(100) with unac...
We demonstrate a simple method for coupling alkynes to alkynes. The method involves tandem azide-alk...
We demonstrate a simple method for coupling alkynes to alkynes. The method involves tandem azide-alk...
We demonstrate a simple method for coupling alkynes to alkynes. The method involves tandem azide–a...
In the frame of our research activity on covalent anchoring of functional molecules on Si oriented s...
The reaction of hydrogen-terminated Si(100) with 1,8-nonadiyne was previously shown to afford robust...
International audienceThe combination of monocrystalline silicon's well-defined structure and the ab...
This thesis introduces a unique strategy that allows micrometer sized redox events at any location o...
We prepared ferrocene-modified silicon surfaces through a three-step procedure consisting of the pho...
We prepared ferrocene-modified silicon surfaces through a three-step procedure consisting of the pho...
A reversible electrochemical behavior is demonstrated on a specially prepared redox-functionalized H...
Light-activated electrochemistry is a powerful concept, where faradaic electrochemistry at a monolay...
Here we report on the functionalization of alkyne-terminated alkyl monolayers on highly doped Si(100...
A novel method to prepare redox monolayers on silicon electrodes has been developed that employs CuI...
The thesis presents the research results obtained while studying novel chemical strategies for prepa...
We report on an exceedingly mild chemical functionalization of hydrogen-terminated Si(100) with unac...
We demonstrate a simple method for coupling alkynes to alkynes. The method involves tandem azide-alk...
We demonstrate a simple method for coupling alkynes to alkynes. The method involves tandem azide-alk...
We demonstrate a simple method for coupling alkynes to alkynes. The method involves tandem azide–a...
In the frame of our research activity on covalent anchoring of functional molecules on Si oriented s...
The reaction of hydrogen-terminated Si(100) with 1,8-nonadiyne was previously shown to afford robust...
International audienceThe combination of monocrystalline silicon's well-defined structure and the ab...
This thesis introduces a unique strategy that allows micrometer sized redox events at any location o...
We prepared ferrocene-modified silicon surfaces through a three-step procedure consisting of the pho...
We prepared ferrocene-modified silicon surfaces through a three-step procedure consisting of the pho...
A reversible electrochemical behavior is demonstrated on a specially prepared redox-functionalized H...
Light-activated electrochemistry is a powerful concept, where faradaic electrochemistry at a monolay...