• Physical Chemistry at the University of Geneva
    H. Hagemann, T.A. Wesolowski, T. Berclaz, L. Gagliardi, M. Geoffroy, A. Hauser, H. Bill, A. Buchs, F. Gülaçar, E.A.C. Lucken, J. Weber and E. Vauthey
    Chimia, 63 (12) (2009), p798-806
    DOI:10.2533/chimia.2009.807 | unige:4773 | Abstract | Article PDF
A brief historical overview of physical chemistry at the University of Geneva as well as a description of the present research activities at the department of physical chemistry are presented.
  • DFT investigation of metal complexes containing a nitrosyl ligand. 1. ground state and metastable states
    P. Boulet, M. Buchs, H. Chermette, C. Daul, F. Gilardoni, F. Rogemond, C.W. Schläpfer and J. Weber
    Journal of Physical Chemistry A, 105 (39) (2001), p8991-8998
    DOI:10.1021/jp010988z | unige:3658 | Abstract | Article HTML | Article PDF
 
Nitrosyl metal complexes, such as the sodium nitroprusside, have attracted chemists' interest for more than 30 years. The existence of long-lived metastable states easily populated by irradiation are the principal reason for this interest. Those long-lived states are interesting either for technical applications or for fundamental research. In this work, we present a comparative density functional theory (DFT) study of the ground state of two different nitrosyl compounds:  sodium nitroprusside and cyclopentadienylnitrosylnickel(II).
  • DFT investigation of metal complexes containing a nitrosyl ligand. 2. excited states
    P. Boulet, M. Buchs, H. Chermette, C. Daul, F. Gilardoni, F. Rogemond, C.W. Schläpfer and J. Weber
    Journal of Physical Chemistry A, 105 (39) (2001), p8999-9003
    DOI:10.1021/jp010989r | unige:3333 | Abstract | Article HTML | Article PDF
The photochemical reactions of the nitroprusside and the CpNiNO complexes are explained on the basis of ΔSCF and time-dependent density functional theory (TD-DFT) calculations. Both similarities and differences in the photochemical processes are highlighted.
To determine the limitations of electrospray mass spectrometry for the study of condensed-phase chemistry, it is important to understand the origin of cases for which the electrospray mass spectra, which are a measure of the relative abundances of gas-phase ions, do not reflect the equilibrium ion abundances in the solution electrosprayed. One such divergent case is that of free-base octaethylporphyrin. Under conditions for which this porphyrin is present in solution predominantly as the doubly charged, diprotonated molecule, the predominant ionic species observed in the electrospray mass spectrum is the singly charged, monoprotonated molecule. In this paper, direct optical spectroscopic measurements of the ions in solution (absorption spectra) and in the electrospray plume (fluorescence excitation spectra) are correlated with the ion distribution observed in the gas-phase (as reflected in the electrospray mass spectra) to determine at what point in the electrospray process and by what mechanism(s) the transformation from dication to monocation occurs. The data indicate that the major portion of the doubly protonated porphyrin species originally present in solution are converted to singly protonated species relatively late in the electrospray process, during the latter stages of droplet desolvation in the atmospheric/vacuum interface of the mass spectrometer, via the loss of a charged solvent molecule/cluster.
  • Potential of cutin hydroxyacids as palaeoenvironmental molecular indicators
    O. Blum, S. Dong, A. Buchs and F.O. Gülaçar
    in "Organic Geochemistry: Developments and applications to energy, climate, environment and human history. Selected papers from the 17th Int. Meet. Org. Geochemistry, San Sebastian, 1995." (J.O. Grimalt & C. Dorronsoro, eds.), A.I.O.G.A., San Sebastian, (1995), p875-877
    unige:3789
  • Characterization of chlorins within a natural chlorin mixture using electrospray/ion trap mass spectrometry
    X.F.D. Chillier, G.J. Van Berkel, F.O. Gülaçar and A. Buchs
    Organic Mass Spectrometry, 29 (11) (1994), p672-678

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