The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCdG)5 which correspond to the UV absorption band around 260 nm. Their properties are studied in the frame of the exciton theory, combining molecular dynamics simulations and quantum chemistry data. It is shown that the dipolar coupling undergoes important variations with the site and the helix geometry. In contrast, the energy of the monomer transitions within the double helix is not sensitive to the local environment. It is thus considered to be distributed over Gaussian curves whose maximum and width are derived from the experimental absorption spectra of nucleosides in aqueous solution. The influence of the spectral width on the excited stat...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...
The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCd...
The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCd...
The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCd...
The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCd...
The singlet excited states of the model DNA duplex (dA)10.(dT)10 are studied. Calculations are perfo...
The singlet excited states of the model DNA duplex (dA)10.(dT)10 are studied. Calculations are perfo...
The singlet excited states of the model DNA duplex (dA)10.(dT)10 are studied. Calculations are perfo...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...
The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCd...
The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCd...
The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCd...
The present communication deals with the excited states of the alternating DNA oligomer (dCdG)5·(dCd...
The singlet excited states of the model DNA duplex (dA)10.(dT)10 are studied. Calculations are perfo...
The singlet excited states of the model DNA duplex (dA)10.(dT)10 are studied. Calculations are perfo...
The singlet excited states of the model DNA duplex (dA)10.(dT)10 are studied. Calculations are perfo...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
The present communication examines how the dynamics of the double helix affects the Frenkel excitons...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...
International audienceThe study of excited states and energy transfer in DNA double helices has rece...