New research from an American group shows the incorporation of DNA and RNA bases in organic light emitting diodes.
Easily functionalized DNA for better conductivity
Nanowires can be produced by pulling DNA over micropillar arrays, leaving a simple overcoating step to improve conductivity.
DNAzyme controlled aggregation of gold nanoparticles for DNA sensors and aptasensors
Researchers have developed a DNA biosensor system by controlling the aggregation of AuNPs using horseradish-peroxidase-mimicking DNAzyme.
Nano-confinement reduces the chaos of DNA interactions: Bringing order to chemotherapy
Researchers at Texas A&M have observed dynamics that could otherwise be discounted as noise in DNA/small molecule interactions.
Laser pulses reveal DNA repair mechanisms
A new straightforward method, based on nonlinear photoperturbation, enables monitoring the response of nuclear proteins to DNA damage in time and space.
DNA prefers to dive head first into nanopores
Brown University researchers have observed and analyzed the movement of individual molecules of DNA using a nanoporous material.
Oxidative damage in DNA-bases – potential for drug design
Prof. Mishra’s group at Banaras Hindu University, India has exhaustively studied two specific reactions of hydroxyl and perhydroxyl radicals.
DNA as a Future Component of Electronics
Researchers develop conducting nanostructures based on metallized DNA.
Toughening up DNA – Improving the Strength of Nanotechnology
Researchers develop a new, more stable method for synthesising nanoparticle lattices using DNA.
Researchers Find Gold Nanoparticles Capable of ‘Unzipping’ DNA
Gold nanoparticles with a slight positive charge work collectively to unravel DNA’s double helix.