AbstractA quantum mechanical and molecular mechanical (QM + MM) direct dynamics classical trajectory simulation is used to study energy transfer and fragmentation in the surface-induced dissociation (SID) of N-protonated diglycine, (gly)2H+. The peptide ion collides with the hydrogenated diamond {111} surface. The Austin Model 1 (AM1) semiempirical electronic structure theory is used for the (gly)2H+ intramolecular potential and molecular mechanical functions are used for the diamond surface potential and peptide/surface intermolecular potential. The simulations are performed at collision energies Ei of 30, 50, 70, and 100 eV and collision angle of 0° (perpendicular to the surface). The percent energy transfer to the peptide ion is nearly i...
Full understanding of the surface-induced dissociation (SID) of biological ions requires the determi...
Surface-induced dissociation (SID) of protonated peptides is a vibrant, active field of study. Signi...
AbstractA new method has been developed to study the dissociation patterns of singly protonated pept...
AbstractA quantum mechanical and molecular mechanical (QM + MM) direct dynamics classical trajectory...
A QM + MM direct chemical dynamics simulation was performed to study collisions of protonated octagl...
International audienceIn this work we have studied the collision induced dissociation (CID) of C-ter...
In this work we have studied the collision induced dissociation (CID) of C-terminally amidated, prot...
AbstractKinetics and dynamics studies have been carried out for the surface-induced dissociation (SI...
International audienceIn this article, a perspective is given of chemical dynamics simulations of co...
The dynamical behavior of model peptides was evaluated with respect to their ability to form interna...
Dans la présente thèse, nous rapportons l'étude de la dissociation induite par collision (CID) de bi...
Collision-induced dissociation (CID) of peptides using tandem mass spectrometry (MS) has been used t...
International audienceIn order to shed light on the fragmentation mechanisms occurring during the co...
The energy dependence of competing fragmentation pathways of protonated peptide molecules is studied...
AbstractA theoretical model and experimental time-of-flight mass spectrometric data for the fragment...
Full understanding of the surface-induced dissociation (SID) of biological ions requires the determi...
Surface-induced dissociation (SID) of protonated peptides is a vibrant, active field of study. Signi...
AbstractA new method has been developed to study the dissociation patterns of singly protonated pept...
AbstractA quantum mechanical and molecular mechanical (QM + MM) direct dynamics classical trajectory...
A QM + MM direct chemical dynamics simulation was performed to study collisions of protonated octagl...
International audienceIn this work we have studied the collision induced dissociation (CID) of C-ter...
In this work we have studied the collision induced dissociation (CID) of C-terminally amidated, prot...
AbstractKinetics and dynamics studies have been carried out for the surface-induced dissociation (SI...
International audienceIn this article, a perspective is given of chemical dynamics simulations of co...
The dynamical behavior of model peptides was evaluated with respect to their ability to form interna...
Dans la présente thèse, nous rapportons l'étude de la dissociation induite par collision (CID) de bi...
Collision-induced dissociation (CID) of peptides using tandem mass spectrometry (MS) has been used t...
International audienceIn order to shed light on the fragmentation mechanisms occurring during the co...
The energy dependence of competing fragmentation pathways of protonated peptide molecules is studied...
AbstractA theoretical model and experimental time-of-flight mass spectrometric data for the fragment...
Full understanding of the surface-induced dissociation (SID) of biological ions requires the determi...
Surface-induced dissociation (SID) of protonated peptides is a vibrant, active field of study. Signi...
AbstractA new method has been developed to study the dissociation patterns of singly protonated pept...