Repository logo
 

A self-reporting tetrazole-based linker for the biofunctionalization of gold nanorods.

Accepted version
Peer-reviewed

Type

Article

Change log

Authors

Stolzer, Lukas 
Vigovskaya, Antonina 
Barner-Kowollik, Christopher 

Abstract

A photochemical approach based on nitrile imine-mediated tetrazole-ene cycloaddition is introduced to functionalize gold nanorods with biomolecules. For this purpose, a bifunctional, photoreactive linker containing thioctic acid as the Au anchoring group and a tetrazole moiety for the light-induced reaction with maleimide-capped DNA was prepared. The tetrazole-based reaction on the nanoparticles' surface results in a fluorescent pyrazoline product allowing for the spectroscopic monitoring of the reaction. This first example of nitrile imine-mediated tetrazole-ene cycloaddition (NITEC)-mediated biofunctionalization of Au nanorods paves the way for the attachment of sensitive biomolecules, such as antibodies and other proteins, under mild conditions and expands the toolbox for the tailoring of nanomaterials.

Description

Keywords

DNA, dipolar cycloaddition, gold, nanostructures, photochemistry, Cycloaddition Reaction, DNA, Gold, Imines, Maleimides, Metal Nanoparticles, Nanostructures, Nanotubes, Nitriles, Tetrazoles

Journal Title

Chemistry

Conference Name

Journal ISSN

0947-6539
1521-3765

Volume Title

21

Publisher

Wiley

Rights

All rights reserved