1 |
Relaxation of Vibrationally Excited OH Radical by SO Garrido JD, Ellakkis S, Ballester MY Journal of Physical Chemistry A, 123(42), 8994, 2019 |
2 |
Coupled-Cluster Study of the Lower Energy Region of the Ground Electronic State of the HSO2 Potential Energy Surface Rodriguez-Linares D, Freitas GN, Ballester MY, Nascimento MAC, Garrido JD Journal of Physical Chemistry A, 119(32), 8734, 2015 |
3 |
Connection between the Upper and Lower Energy Regions of the Potential Energy Surface of the Ground Electronic State of the HSO2 System Freitas GN, Garrido JD, Ballester MY, Nascimento MAC Journal of Physical Chemistry A, 116(29), 7677, 2012 |
4 |
CASPT2 Study of the Potential Energy Surface of the HSO2 System Garrido JD, Ballester MY, Orozco-Gonzalez Y, Canuto S Journal of Physical Chemistry A, 115(9), 1453, 2011 |
5 |
Dynamics study of the OH+O-2 branching atmospheric reaction. 4. Influence of vibrational relaxation in collisions involving highly excited species Garrido JD, Caridade PJSB, Varandas AJC Journal of Physical Chemistry A, 106(21), 5314, 2002 |
6 |
Dynamics study of the OH+O-2 branching atmospheric reaction. 2. Influence of reactants internal energy in HO2 and O-3 formation Caridade PJSB, Zhang L, Garrido JD, Varandas AJC Journal of Physical Chemistry A, 105(18), 4395, 2001 |
7 |
Dynamics study of the OH+O-2 branching atmospheric reaction. 3. Dissociation in collisions of vibrationally excited reactants Caridade PJSB, Betancourt M, Garrido JD, Varandas AJC Journal of Physical Chemistry A, 105(31), 7435, 2001 |
8 |
Dynamics study of the HO(v'=0)+O-2(v'') branching atmospheric reaction. 1. Formation of hydroperoxyl radical Garrido JD, Caridade PJSB, Varandas AJC Journal of Physical Chemistry A, 103(25), 4815, 1999 |