We demonstrate a simple method for coupling alkynes to alkynes. The method involves tandem azide-alkyne cycloaddition reactions ("click" chemistry) for the immobilization of 1-alkyne species onto an alkyne modified surface in a one-pot procedure. In the case presented, these reactions take place on a nonoxidized Si(100) surface although the approach is general for linking alkynes to alkynes. The applicability of the method in the preparation of electrically well-behaved functionalized surfaces is demonstrated by coupling an alkyne-tagged ferrocene species onto alkyne-terminated Si(100) surfaces. The utility of the approach in biotechnology is shown by constructing a DNA sensing interface by derivatization of the acetylenyl surface with comm...
The conversion of surface-bound aminophenyl groups to azidophenyl moieties on SiO<sub><i>x</i></sub>...
Thiol-yne click (TYC) chemistry was utilized as a copper-free click reaction for the modification of...
This thesis introduces a unique strategy that allows micrometer sized redox events at any location o...
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...
A novel method to prepare redox monolayers on silicon electrodes has been developed that employs CuI...
Here we report on the functionalization of alkyne-terminated alkyl monolayers on highly doped Si(100...
Here we report on the functionalization of alkyne-terminated alkyl monolayers on highly doped Si(100...
The thesis presents the research results obtained while studying novel chemical strategies for prepa...
In the frame of our research activity on covalent anchoring of functional molecules on Si oriented s...
The relative reactivities of alkynes to alkenes on hydrogen-terminated silicon (100) surfaces, under...
The relative reactivities of alkynes to alkenes on hydrogen-terminated silicon (100) surfaces, under...
We report on an exceedingly mild chemical functionalization of hydrogen-terminated Si(100) with unac...
International audienceThe incorporation of terminal alkynes into the chemical structure of persisten...
Monolayers of a series of 1-alkynes, from 1-dodecyne to 1-octadecyne, have been prepared on the hydr...
The conversion of surface-bound aminophenyl groups to azidophenyl moieties on SiO<sub><i>x</i></sub>...
Thiol-yne click (TYC) chemistry was utilized as a copper-free click reaction for the modification of...
This thesis introduces a unique strategy that allows micrometer sized redox events at any location o...
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...
A novel method to prepare redox monolayers on silicon electrodes has been developed that employs CuI...
Here we report on the functionalization of alkyne-terminated alkyl monolayers on highly doped Si(100...
Here we report on the functionalization of alkyne-terminated alkyl monolayers on highly doped Si(100...
The thesis presents the research results obtained while studying novel chemical strategies for prepa...
In the frame of our research activity on covalent anchoring of functional molecules on Si oriented s...
The relative reactivities of alkynes to alkenes on hydrogen-terminated silicon (100) surfaces, under...
The relative reactivities of alkynes to alkenes on hydrogen-terminated silicon (100) surfaces, under...
We report on an exceedingly mild chemical functionalization of hydrogen-terminated Si(100) with unac...
International audienceThe incorporation of terminal alkynes into the chemical structure of persisten...
Monolayers of a series of 1-alkynes, from 1-dodecyne to 1-octadecyne, have been prepared on the hydr...
The conversion of surface-bound aminophenyl groups to azidophenyl moieties on SiO<sub><i>x</i></sub>...
Thiol-yne click (TYC) chemistry was utilized as a copper-free click reaction for the modification of...
This thesis introduces a unique strategy that allows micrometer sized redox events at any location o...