Related Experiment Video
Updated: Mar 19, 2026

Determination of the Photoisomerization Quantum Yield of a Hydrazone Photoswitch
Published on: February 7, 2022
Rate constant calculations of the GeH4 + OH/OD → GeH3 + H2O/HOD reactions using an ab initio based full-dimensional
J Espinosa-Garcia1, C Rangel1, J C Corchado1
1Departamento de Quimica Fisica and Instituto de Computación Científica Avanzada, Universidad de Extremadura, 06071 Badajoz, Spain. joaquin@unex.es.
Abstract:
We report an analytical full-dimensional potential energy surface for the GeH4 + OH → GeH3 + H2O reaction based on ab initio calculations. It is a practically barrierless reaction with very high exothermicity and the presence of intermediate complexes in the entrance and exit channels, reproducing the experimental evidence. Using this surface, thermal rate constants for the GeH4 + OH/OD isotopic reactions were calculated using two approaches: variational transition state theory (VTST) and quasi-classical trajectory (QCT) calculations, in the temperature range 200-1000 K, and results were compared with the only experimental data at 298 K. Both methods showed similar values over the whole temperature range, with differences less than 30%; and the experimental data was reproduced at 298 K, with negative temperature dependence below 300 K, which is associated with the presence of an intermediate complex in the entrance channel. However, while the QCT approach reproduced the experimental kinetic isotope effect, the VTST approach underestimated it. We suggest that this difference is associated with the harmonic approximation used in the treatment of vibrational frequencies.
Related Concept Videos
Hess's Law
Multi-Step Reactions
Reaction Rate
The mathematical representation of the change in the concentration of reactants and products, over time, is the rate...
Strong Acid and Base Solutions
Thermochemical Equations
Constant Pressure Calorimetry

