AbstractBackground: Multiple-stranded DNA assemblies, encoded by sequence, have been constructed in an effort to self-assemble nanodevices of defined molecular architecture. Double-helical DNA has been probed also as a molecular medium for charge transport. Conductivity studies suggest that DNA displays semiconductor properties, whereas biochemical studies have shown that oxidative damage to B-DNA at the 5′-G of a 5′-GG-3′ doublet can occur by charge transport through DNA up to 20 nm from a photo-excited metallointercalator. The possible application of DNA assemblies, in particular double crossover (DX) molecules, in electrical nanodevices prompted the design of a DNA DX assembly with oxidatively sensitive guanine moieties and a tethered rh...
Molecular wires show promise in nanoscale electronics but the synthesis of uniform, long conductive ...
Electron transfer is the most essential process in any chemical or biochemical reactions. Especiall...
The role of base motions in delocalization and propagation of charge through double helical DNA must...
Background: Multiple-stranded DNA assemblies, encoded by sequence, have been constructed in an effor...
AbstractBackground: Multiple-stranded DNA assemblies, encoded by sequence, have been constructed in ...
Electronic coupling of the stacked heterocyclic base pairs in DNA duplexes makes DNA a promising bio...
Long range oxidative damage as a result of charge transport is shown to occur through single crossov...
The base pair stack within double helical DNA provides an effective medium for charge transport. The...
The stack of base pairs within double helical DNA has been shown to mediate charge transport reactio...
Charge transport across novel DNA junctions has been studied for several decades. From early attempt...
The need for miniaturization of devices for future nanoelectronic applications has led to the search...
We investigate the nature of charge transport in deoxyribonucleic acid (DNA) using self-assembled la...
Photochemical reactions on DNA assemblies containing tethered photooxidants, particularly metalloint...
Deoxyribonucleic acid (DNA) has been hypothesized to act as a molecular wire due to the presence of ...
Long-range oxidative damage to DNA was utilized as a probe to delineate the effects of different ion...
Molecular wires show promise in nanoscale electronics but the synthesis of uniform, long conductive ...
Electron transfer is the most essential process in any chemical or biochemical reactions. Especiall...
The role of base motions in delocalization and propagation of charge through double helical DNA must...
Background: Multiple-stranded DNA assemblies, encoded by sequence, have been constructed in an effor...
AbstractBackground: Multiple-stranded DNA assemblies, encoded by sequence, have been constructed in ...
Electronic coupling of the stacked heterocyclic base pairs in DNA duplexes makes DNA a promising bio...
Long range oxidative damage as a result of charge transport is shown to occur through single crossov...
The base pair stack within double helical DNA provides an effective medium for charge transport. The...
The stack of base pairs within double helical DNA has been shown to mediate charge transport reactio...
Charge transport across novel DNA junctions has been studied for several decades. From early attempt...
The need for miniaturization of devices for future nanoelectronic applications has led to the search...
We investigate the nature of charge transport in deoxyribonucleic acid (DNA) using self-assembled la...
Photochemical reactions on DNA assemblies containing tethered photooxidants, particularly metalloint...
Deoxyribonucleic acid (DNA) has been hypothesized to act as a molecular wire due to the presence of ...
Long-range oxidative damage to DNA was utilized as a probe to delineate the effects of different ion...
Molecular wires show promise in nanoscale electronics but the synthesis of uniform, long conductive ...
Electron transfer is the most essential process in any chemical or biochemical reactions. Especiall...
The role of base motions in delocalization and propagation of charge through double helical DNA must...