International audienceThe fragmentation process of the uracil RNA base has been investigated via DFT calculations in order to assign fragments to the ionisation mass spectrum obtained after dissociation induced by collision experiments. The analysis of the electronic distribution and geometry parameters of the cation allows selection of several bonds that may be cleaved and lead to the formation of various fragments. Differences are observed in the electronic behaviour of the bond breaking as well as the energy required for the cleavage. It is reported that N(3)-C(4) and N(1)-C(2) bonds are more easily cleaved than the C(5)-C(6) bond, since the corresponding energy barriers amount to ΔG = +1.627, +1.710, +5.459 eV, respectively, which makes...
International audienceWe present a series of ab initio density functional based calculations of the ...
International audienceThe potential energy surface of protonated uracil has been explored with an au...
Ionization and fragmentation of the RNA base uracil (C4H4N2O2) by means of Cq+ ions (q = 1-6) has be...
We investigate pathways for fragmentation in the uracil radical cation using ab initio electronic st...
Ionizing radiation (IR) cross human tissue, deposit energy and dissipate fragmenting molecules. The ...
The possible fragmentation mechanisms of the uracil cation have been investigated through DFT calcul...
Les rayonnements ionisants (RI) traversent les tissus humains, y déposent de l'énergie et la dissipe...
This research has benefited from the support of the TMO Cancer Avesian from the Cancer Plan 2009/201...
This research has benefited from the support of the TMO Cancer Avesian from the Cancer Plan 2009/201...
In this study the fragmentation of isolated uracil molecules, uracil clusters and hydrated uracil cl...
International audienceWe have studied the fragmentation of uracil in both gas phase and water enviro...
We study the atomic collisions with large molecules and simple atoms. The ionization and f...
International audienceDNA’s role in heritage and coding protein was described long time ago. The pre...
Study of large molecules (biomolecules etc) and clusters is an area of wide interest especially in a...
International audienceWe present a series of ab initio density functional based calculations of the ...
International audienceThe potential energy surface of protonated uracil has been explored with an au...
Ionization and fragmentation of the RNA base uracil (C4H4N2O2) by means of Cq+ ions (q = 1-6) has be...
We investigate pathways for fragmentation in the uracil radical cation using ab initio electronic st...
Ionizing radiation (IR) cross human tissue, deposit energy and dissipate fragmenting molecules. The ...
The possible fragmentation mechanisms of the uracil cation have been investigated through DFT calcul...
Les rayonnements ionisants (RI) traversent les tissus humains, y déposent de l'énergie et la dissipe...
This research has benefited from the support of the TMO Cancer Avesian from the Cancer Plan 2009/201...
This research has benefited from the support of the TMO Cancer Avesian from the Cancer Plan 2009/201...
In this study the fragmentation of isolated uracil molecules, uracil clusters and hydrated uracil cl...
International audienceWe have studied the fragmentation of uracil in both gas phase and water enviro...
We study the atomic collisions with large molecules and simple atoms. The ionization and f...
International audienceDNA’s role in heritage and coding protein was described long time ago. The pre...
Study of large molecules (biomolecules etc) and clusters is an area of wide interest especially in a...
International audienceWe present a series of ab initio density functional based calculations of the ...
International audienceThe potential energy surface of protonated uracil has been explored with an au...
Ionization and fragmentation of the RNA base uracil (C4H4N2O2) by means of Cq+ ions (q = 1-6) has be...