Quantum chemistry and statistical reaction rate theory calculations have been performed to investigate the products and kinetics of indenyl radical decomposition. Three competitive product sets are identified, including formation of a cyclopentadienyl radical (cCH) and diacetylene (CH), which has not been included in prior theoretical kinetics investigations. Rate coefficients for indenyl decomposition are determined from master equation simulations at 1800-2400 K and 0.01-100 atm, and temperature- and pressure-dependent rate coefficient expressions are incorporated into a detailed chemical kinetic model for indene pyrolysis. Indenyl is found to predominantly decompose to -benzyne (-CH) + propargyl (CH), with lesser amounts of fulvenallenyl (CH) + CH and c-CH + CH.
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http://dx.doi.org/10.1021/acs.jpca.1c01000 | DOI Listing |
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