articleThe Journal of Physical Chemistry ASep 20, 2013Closed access

Reformulation and Solution of the Master Equation for Multiple-Well Chemical Reactions

Argonne National Laboratory

PubMed
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Abstract

We consider an alternative formulation of the master equation for complex-forming chemical reactions with multiple wells and bimolecular products. Within this formulation the dynamical phase space consists of only the microscopic populations of the various isomers making up the reactive complex, while the bimolecular reactants and products are treated equally as sources and sinks. This reformulation yields compact expressions for the phenomenological rate coefficients describing all chemical processes, i.e., internal isomerization reactions, bimolecular-to-bimolecular reactions, isomer-to-bimolecular reactions, and bimolecular-to-isomer reactions. The applicability of the detailed balance condition is…

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697
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17.99
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100%
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Authors

4

Topics & keywords

Keywords
  • Master equation
  • Detailed balance
  • Isomerization
  • Chemical reaction
  • Chemistry
  • Eigenvalues and eigenvectors
  • Relaxation (psychology)
  • Thermodynamics
UN Sustainable Development Goals
  • Affordable and clean energy
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