Ionization and fragmentation of the RNA base uracil (C4H4N2O2) by means of Cq+ ions (q = 1-6) has been studied for ion kinetic energies ranging from ;2 to 120 keV. Whereas for Cq+ (q = 1, 3, 4, 5, 6) very similar fragmentation yields are observed which increase with the projectile velocity v, C2+ ions not only induce a fundamentally different fragmentation pattern but also lead to a decrease of fragmentation with ion velocity v. At low velocities, even almost complete fragmentation is observed. Our findings can be explained by differences in the electronic structures of the Cq+ ions as well as by employing the electronic stopping model previously applied to ion-fullerene interactions.</p
The interaction of multiply charged ions with fullerenes involves processes such as ionization, evap...
Ionization and fragmentation of uracil molecules (C4H4N2O2, m = 112 amu) in collisions with fast hig...
<p><strong>Figure A1.</strong> DDCS spectrum of (a) uracil and (b) O<sub>2</sub> in collisions with ...
Ionization and fragmentation of the RNA base uracil (C4H4N2O2) by means of Cq+ ions (q = 1-6) has be...
Ionization and fragmentation of the RNA base uracil (C4H4N2O2) by means of Cq+ ions (q = 1-6) has be...
We study the atomic collisions with large molecules and simple atoms. The ionization and f...
Single electron capture from molecular uracil (C4H4N2O2) by doubly-charged He2+, ...
Study of large molecules (biomolecules etc) and clusters is an area of wide interest especially in a...
We studied multiply charged ion (MCI) induced ionization, excitation and fragmentation of the nucleo...
<p><strong>Figure 7.</strong> Partial cross sections of fragments of uracil in collisions with (a) C...
Besides fundamental interest in the study of ion-molecule collision aspects, the investigation of bi...
International audienceThe fragmentation process of the uracil RNA base has been investigated via DFT...
<p><strong>Figure 2.</strong> Plot of uracil deposition rate versus time.</p> <p><strong>Abstract</s...
The interaction of multiply charged ions with fullerenes is governed by electron capture as well as ...
Fragmentation of C-60 fullerenes by collisions with multiply charged Oq+ ions (1 less than or equal ...
The interaction of multiply charged ions with fullerenes involves processes such as ionization, evap...
Ionization and fragmentation of uracil molecules (C4H4N2O2, m = 112 amu) in collisions with fast hig...
<p><strong>Figure A1.</strong> DDCS spectrum of (a) uracil and (b) O<sub>2</sub> in collisions with ...
Ionization and fragmentation of the RNA base uracil (C4H4N2O2) by means of Cq+ ions (q = 1-6) has be...
Ionization and fragmentation of the RNA base uracil (C4H4N2O2) by means of Cq+ ions (q = 1-6) has be...
We study the atomic collisions with large molecules and simple atoms. The ionization and f...
Single electron capture from molecular uracil (C4H4N2O2) by doubly-charged He2+, ...
Study of large molecules (biomolecules etc) and clusters is an area of wide interest especially in a...
We studied multiply charged ion (MCI) induced ionization, excitation and fragmentation of the nucleo...
<p><strong>Figure 7.</strong> Partial cross sections of fragments of uracil in collisions with (a) C...
Besides fundamental interest in the study of ion-molecule collision aspects, the investigation of bi...
International audienceThe fragmentation process of the uracil RNA base has been investigated via DFT...
<p><strong>Figure 2.</strong> Plot of uracil deposition rate versus time.</p> <p><strong>Abstract</s...
The interaction of multiply charged ions with fullerenes is governed by electron capture as well as ...
Fragmentation of C-60 fullerenes by collisions with multiply charged Oq+ ions (1 less than or equal ...
The interaction of multiply charged ions with fullerenes involves processes such as ionization, evap...
Ionization and fragmentation of uracil molecules (C4H4N2O2, m = 112 amu) in collisions with fast hig...
<p><strong>Figure A1.</strong> DDCS spectrum of (a) uracil and (b) O<sub>2</sub> in collisions with ...