Efficient functionalization of silicon substrates is important for the development of silicon-based sensors. Organic monolayers directly bonded to hydrogen-terminated silicon substrates via Si–C bonds display enhanced stability toward hydrolytic cleavage. Here, we show that monolayers presenting a high density of terminal azide groups are amenable to bioconjugation with alkynyl-derivatized glycans via a copper-catalyzed azide–alkyne 1,3-dipolar cycloaddition. The prerequisite azide-functionalized silicon surface is fabricated via hydrosilylation of undecylenic acid with hydrogen-terminated silicon substrate followed by reaction of the thus formed monolayer of acid groups with short, bifunctional oligoethylene oxide chains carrying an amine ...
This note describes the synthesis of different alkenylated carbohydrate derivatives suitable for dir...
The silicon surface may be functionalized with organic groups through direct Si-C bonding, which pro...
Organic functionalization of non-oxidized silicon surfaces, while allowing for robust chemical passi...
The interaction of carbohydrates with a variety of biological targets,including antibodies,proteins,...
A key challenge in the development of glycan arrays is that the sensing interface be fabricated reli...
Cu-free "click" chemistry is explored on silicon nitride (Si3N4) surfaces as an effective way for or...
Thiol–ene click chemistry was used for the attachment of a variety of functional molecules onto oxid...
N-Hydroxysuccinimide (NHS)-ester-terminated monolayers were covalently attached in one step onto sil...
Construction of high density glycosylated surfaces is important in the investigation of interactions...
Thiol–ene click chemistry was used for the attachment of a variety of functional molecules onto oxid...
The interaction of carbohydrates with a variety of biological targets, including antibodies, protein...
Usually hydroxyl groups present on top of oxidized silicon served as binding centers for a silanizat...
With the current trend to miniaturize bioactive surfaces to micro-or nanometer scale, the strategy o...
Specific carbohydrate/protein interactions play an important role in numerous physiological and path...
This paper presents the first functionalization of silicon surfaces with well-defined, covalently at...
This note describes the synthesis of different alkenylated carbohydrate derivatives suitable for dir...
The silicon surface may be functionalized with organic groups through direct Si-C bonding, which pro...
Organic functionalization of non-oxidized silicon surfaces, while allowing for robust chemical passi...
The interaction of carbohydrates with a variety of biological targets,including antibodies,proteins,...
A key challenge in the development of glycan arrays is that the sensing interface be fabricated reli...
Cu-free "click" chemistry is explored on silicon nitride (Si3N4) surfaces as an effective way for or...
Thiol–ene click chemistry was used for the attachment of a variety of functional molecules onto oxid...
N-Hydroxysuccinimide (NHS)-ester-terminated monolayers were covalently attached in one step onto sil...
Construction of high density glycosylated surfaces is important in the investigation of interactions...
Thiol–ene click chemistry was used for the attachment of a variety of functional molecules onto oxid...
The interaction of carbohydrates with a variety of biological targets, including antibodies, protein...
Usually hydroxyl groups present on top of oxidized silicon served as binding centers for a silanizat...
With the current trend to miniaturize bioactive surfaces to micro-or nanometer scale, the strategy o...
Specific carbohydrate/protein interactions play an important role in numerous physiological and path...
This paper presents the first functionalization of silicon surfaces with well-defined, covalently at...
This note describes the synthesis of different alkenylated carbohydrate derivatives suitable for dir...
The silicon surface may be functionalized with organic groups through direct Si-C bonding, which pro...
Organic functionalization of non-oxidized silicon surfaces, while allowing for robust chemical passi...