Published May 21, 1987 | Version v1
Journal article

Collisional effects in organometallic multiphoton dissociation/ionization experiments: the modeling of Townsend discharges

  • 1. Syracuse Univ., NY

Description

The authors have measured the effects of added buffer gas on the ionization (MPI) signal of various arene chromium tricarbonyls and Cr(CO)6. Using basic gaseous electronics theory and experimental results on ion multiplication behavior in pure buffer gases, they have found the simplest method for quantitative analysis of collisional effects in MPI systems. They have applied this discharge model to the multiphoton ionization signal of chromium compounds as a function of helium, argon, and xenon pressures at a number of wavelengths and ion collection plant voltages. Where simple ion multiplication behavior holds, the measured ion signal is directly proportional to the initial MPI yield. This is of crucial importance for MPI studies where product branching ratios are being determined. When multiplication theory does not model the ion signal pressure dependence, other processes which may influence ion production in the system must be considered

Additional details

Publishing Information

Journal Title
J. Phys. Chem.
Journal Volume
91
Journal Issue
11
Series
J. Phys. Chem.
Journal Page Range
2825-2831
ISSN
0022-3654
CODEN
JPCHA