Title: Effect of energy dependence of the density of states on pressure-dependent rate constants

Journal Article · · Physical Chemistry Chemical Physics. PCCP
DOI: https://doi.org/10.1039/c8cp05915b · OSTI ID:1612362

The FE integral for the normalized Boltzmann-weighted number of unimolecular states above the threshold energy is the key quantity for computing the collision efficiency in the pressure-dependent unimolecular rate theory developed by Troe, who calls this the energy dependence factor of the density of states. By using the Whitten–Rabinovitch approximation and assuming that the Whitten–Rabinovitch a(E) function is independent of energy, FE can be approximated by an analytical formula; this approximate formula is widely used because of its convenience and computational efficiency. Here we test its validity by comparing the rate constants computed by using the approximate FE to the ones determined by using the numerically integrated FE. For small-sized molecules and for reactions with high threshold energies E0, the differences are negligible at all temperatures, but in other cases, the approximate formula tends to underestimate FE and thus overestimates the collision efficiency, and this leads to smaller pressure falloff. When a(E) at high energies differs appreciably from a(E0), we find that the underestimation of pressure-dependent rate constants by using the approximate formula can be greater than a factor of 5 at high temperatures. The physical insight we draw from this study is that, for reactions with threshold energies below about 30 kcal mol-1, the rate of collisional energy transfer can be appreciably slowed down by the increase in the density of states at higher energies, and this increases the falloff effect by which finite-pressure rate constants become lower than the high-pressure limit, especially at higher temperatures.

Research Organization:
University of New Mexico, Albuquerque, NM (United States)
Sponsoring Organization:
USDOE Office of Science (SC); USDOE Office of Science (SC), Basic Energy Sciences (BES)
Grant/Contract Number:
SC0015997
OSTI ID:
1612362
Journal Information:
Physical Chemistry Chemical Physics. PCCP, Journal Name: Physical Chemistry Chemical Physics. PCCP Journal Issue: 48 Vol. 20; ISSN 1463-9076; ISSN PPCPFQ
Publisher:
Royal Society of ChemistryCopyright Statement
Country of Publication:
United States
Language:
English

References (29)

Pressure- and temperature-dependent combustion reactions journal April 2011
Dual-Level Method for Estimating Multistructural Partition Functions with Torsional Anharmonicity journal May 2017
Trajectory and Model Studies of Collisions of Highly Excited Methane with Water Using an ab Initio Potential journal August 2015
Energy transfer in highly excited large polyatomic molecules journal December 1990
Theoretical Chemical Kinetics in Tropospheric Chemistry: Methodologies and Applications journal February 2015
Quantum Thermochemistry: Multistructural Method with Torsional Anharmonicity Based on a Coupled Torsional Potential journal February 2013
Predictive possibilities of unimolecular rate theory journal January 1979
Studies in Homogeneous Gas Reactions. I journal February 1928
The Kinetics of the Recombination of Methyl Radicals and Iodine Atoms. journal June 1951
Direct measurements of energy-transfer involving large molecules in the electronic ground state journal January 1984
The Thermal Unimolecular Isomerization of Methyl Isocyanide. Fall-of Behaviour journal November 1962
Kinetics of Hydrogen Radical Reactions with Toluene Including Chemical Activation Theory Employing System-Specific Quantum RRK Theory Calibrated by Variational Transition State Theory journal February 2016
Theoretical Unimolecular Kinetics for CH 4 + M ⇄ CH 3 + H + M in Eight Baths, M = He, Ne, Ar, Kr, H 2 , N 2 , CO, and CH 4 journal June 2011
Silane-initiated nucleation in chemically active plasmas: validation of density functionals, mechanisms, and pressure-dependent variational transition state calculations journal January 2016
Predicting pressure-dependent unimolecular rate constants using variational transition state theory with multidimensional tunneling combined with system-specific quantum RRK theory: a definitive test for fluoroform dissociation journal January 2016
Reaction of SO 2 with OH in the atmosphere journal January 2017
Variational transition state theory: theoretical framework and recent developments journal January 2017
A master equation model for bimolecular reaction via multi-well isomerizing intermediates journal January 2000
Chemical activation journal January 1964
Collisional Energy Transfer in Thermal Unimolecular Systems. Dilution Effects and Falloff Region journal February 1968
Approximation for Rotation—Vibration Energy Level Sums journal September 1964
Collisional Energy Transfer. Thermal Unimolecular Systems in the Low‐Pressure Region journal November 1966
Unimolecular Decomposition of Chemically Activated sec ‐Butyl Radicals from H Atoms plus cis ‐Butene‐2 journal March 1959
On the Classical Approximation in Unimolecular Reactions and Mass Spectra journal December 1961
Accurate and Facile Approximation for Vibrational Energy‐Level Sums journal May 1963
Statistical thermodynamics of bond torsional modes: Tests of separable, almost-separable, and improved Pitzer–Gwinn approximations journal August 2006
Theory of thermal unimolecular reactions at low pressures. I. Solutions of the master equation journal June 1977
Theory of thermal unimolecular reactions at low pressures. II. Strong collision rate constants. Applications journal June 1977
Barrierless association of CF 2 and dissociation of C 2 F 4 by variational transition-state theory and system-specific quantum Rice–Ramsperger–Kassel theory journal November 2016

Similar Records

Predictive possibilities of unimolecular rate theory
Journal Article · 1979 · J. Phys. Chem.; (United States) · OSTI ID:6390811

Temperature-dependent A factor in thermal unimolecular reactions
Journal Article · 1979 · J. Phys. Chem.; (United States) · OSTI ID:6486734

Effect of fluctuations in state-specific unimolecular rate constants on the pressure dependence of the average unimolecular reaction rate
Journal Article · 1988 · J. Phys. Chem.; (United States) · OSTI ID:6254740