Molecular wires show promise in nanoscale electronics but the synthesis of uniform, long conductive molecules is a significant challenge. DNA of precise length, by contrast, is easily synthesized, but its conductivity has not been explored over the distances required for nanoscale devices. Here we demonstrate DNA charge transport (CT) over 34 nm in 100-mer monolayers on gold. Multiplexed gold electrodes modified with 100-mer DNA yield sizable electrochemical signals from a distal, covalent Nile Blue redox probe. Significant signal attenuation upon incorporation of a single base pair mismatch demonstrates that CT is DNA-mediated. Efficient cleavage of these 100-mers by a restriction enzyme indicates that the DNA adopts a native conformation ...
Advanced molecular electronic components remain vital for the next generation of miniaturized integr...
The DNA duplex is an exquisite macromolecular array that stores genetic information to encode protei...
The use of DNA to assembly metal nanoparticles into specific crystalline lattices is a topic of high...
Molecular wires show promise in nanoscale electronics but the synthesis of uniform, long conductive ...
The base pair stack of DNA has been demonstrated as a medium for long-range charge transport chemist...
The DNA double helix has captured the imagination of many, bringing it to the forefront of biologica...
DNA charge transport (CT) chemistry has received considerable attention by scientific researchers ov...
The structural core of DNA, a continuous stack of aromatic heterocycles—the base pairs—that extends ...
We investigate the nature of charge transport in deoxyribonucleic acid (DNA) using self-assembled la...
AbstractBackground: Multiple-stranded DNA assemblies, encoded by sequence, have been constructed in ...
DNA charge transport chemistry involves the migration of charge over long molecular distances throug...
The structural core of DNA, a continuous stack of aromatic heterocycles, the base pairs, which exten...
Measurements of DNA conductivity, hybridization, and melting using electronic means can have wide ap...
This paper presents a study of sequence specific electronic conduction through short (15-base- pair)...
Determining the mechanism of charge transport through native DNA remains a challenge as different fa...
Advanced molecular electronic components remain vital for the next generation of miniaturized integr...
The DNA duplex is an exquisite macromolecular array that stores genetic information to encode protei...
The use of DNA to assembly metal nanoparticles into specific crystalline lattices is a topic of high...
Molecular wires show promise in nanoscale electronics but the synthesis of uniform, long conductive ...
The base pair stack of DNA has been demonstrated as a medium for long-range charge transport chemist...
The DNA double helix has captured the imagination of many, bringing it to the forefront of biologica...
DNA charge transport (CT) chemistry has received considerable attention by scientific researchers ov...
The structural core of DNA, a continuous stack of aromatic heterocycles—the base pairs—that extends ...
We investigate the nature of charge transport in deoxyribonucleic acid (DNA) using self-assembled la...
AbstractBackground: Multiple-stranded DNA assemblies, encoded by sequence, have been constructed in ...
DNA charge transport chemistry involves the migration of charge over long molecular distances throug...
The structural core of DNA, a continuous stack of aromatic heterocycles, the base pairs, which exten...
Measurements of DNA conductivity, hybridization, and melting using electronic means can have wide ap...
This paper presents a study of sequence specific electronic conduction through short (15-base- pair)...
Determining the mechanism of charge transport through native DNA remains a challenge as different fa...
Advanced molecular electronic components remain vital for the next generation of miniaturized integr...
The DNA duplex is an exquisite macromolecular array that stores genetic information to encode protei...
The use of DNA to assembly metal nanoparticles into specific crystalline lattices is a topic of high...