Abstract. Numerous experiments on charge transfer in DNA yield a contradictory picture of the transfer: on the one hand they suggest that it is a very slow process and the charge is almost completely localized on one Watson-Crick pair, but on the other hand they demonstrate that the charge can travel a very large distance. To explain this contradiction we propose that superfast charge transitions are possible between base pairs on individual DNA fragments resulting in the establishment of a quasi-equilibrium charge distribution during the time less than that of charge solvation. In other words, we hypothesize these states irrespective of the nature of a mechanism responsible for their establishment, whether it be a hopping mechanism, or a b...
The mechanism of hole charge transfer in DNA of various lengths and sequences is investigated based ...
A quantum chemistry based Green's function formulation of long-range charge transfer in deoxyribose ...
Abstract: Long-distance transfer of a positive charge through DNA can be described by a hopping mode...
In Chap. 4, Koslowski and Cramer address the phenomenon of charge transport in DNA using a simple, b...
In Chap. 4, Koslowski and Cramer address the phenomenon of charge transport in DNA using a simple, b...
This article reviews our recent theoretical development toward understanding the interplay of electr...
Charge transfer in supramolecular assemblies of DNA is unique because of the notion that the pi -sta...
In this work, we address the phenomenon of charge transport in DNA using a simple, but chemically sp...
In this work, we address the phenomenon of charge transport in DNA using a simple, but chemically sp...
In this work, we address the phenomenon of charge transport in DNA using a simple, but chemically sp...
We address various regimes of charge transfer in DNA within the framework of the Peyrard-Bishop-Hols...
Charge transfer in supramolecular assemblies of DNA is unique because of the notion that the pi -sta...
Chemical reactions occurring in solution are strongly affected by the surrounding solvent. For bioch...
A formulation that readily allows quantitative comparisons with experimental chemical yields in long...
The mechanism of hole charge transfer in DNA of various lengths and sequences is investigated based ...
The mechanism of hole charge transfer in DNA of various lengths and sequences is investigated based ...
A quantum chemistry based Green's function formulation of long-range charge transfer in deoxyribose ...
Abstract: Long-distance transfer of a positive charge through DNA can be described by a hopping mode...
In Chap. 4, Koslowski and Cramer address the phenomenon of charge transport in DNA using a simple, b...
In Chap. 4, Koslowski and Cramer address the phenomenon of charge transport in DNA using a simple, b...
This article reviews our recent theoretical development toward understanding the interplay of electr...
Charge transfer in supramolecular assemblies of DNA is unique because of the notion that the pi -sta...
In this work, we address the phenomenon of charge transport in DNA using a simple, but chemically sp...
In this work, we address the phenomenon of charge transport in DNA using a simple, but chemically sp...
In this work, we address the phenomenon of charge transport in DNA using a simple, but chemically sp...
We address various regimes of charge transfer in DNA within the framework of the Peyrard-Bishop-Hols...
Charge transfer in supramolecular assemblies of DNA is unique because of the notion that the pi -sta...
Chemical reactions occurring in solution are strongly affected by the surrounding solvent. For bioch...
A formulation that readily allows quantitative comparisons with experimental chemical yields in long...
The mechanism of hole charge transfer in DNA of various lengths and sequences is investigated based ...
The mechanism of hole charge transfer in DNA of various lengths and sequences is investigated based ...
A quantum chemistry based Green's function formulation of long-range charge transfer in deoxyribose ...
Abstract: Long-distance transfer of a positive charge through DNA can be described by a hopping mode...