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Updated: Mar 1, 2026

A Polyaniline-based Sensor of Nucleic Acids
Published on: November 1, 2016
Versatile functionalization of nanoelectrodes by oligonucleotides via pyrrole electrochemistry
Emeline Descamps1, Khoa Nguyen, Christelle Bouchain-Gautier
1INAC-SPrAM-CREAB (UMR 5819 CNRS-CEA-Université Joseph Fourier), CEA Grenoble, 17 rue des Martyrs, 38054 Grenoble cedex 9, France.
Abstract:
Surface modification at the nanometer scale is a challenge for the future of molecular electronics. In particular, the precise anchoring and electrical addressing of biological scaffolds such as complex DNA nanonetworks is of importance for generating bio-directed assemblies of nano-objects for nanocircuit purposes. Herein, we consider the individual modification of nanoelectrodes with different oligonucleotide sequences by an electrochemically driven co-polymerization process of pyrrole and modified oligonucleotide sequences bearing pyrrole monomers. We demonstrate that this one-step technique presents the advantages of simplicity, localization of surface modification, mechanical, biological and chemical stability of the coatings, and high lateral resolution.

