Quantum-Chemical Study of Stressed Polyethylene and Butadiene Rubber Chain Scission
- Autores: Krisyuk B.E.1, Mamin E.A.2,3, Popov A.A.2,3
-
Afiliações:
- Institute of Problems of Chemical Physics
- Plekhanov Russian University of Economics
- Emanuel Institute of Biochemical Physics
- Edição: Volume 12, Nº 2 (2018)
- Páginas: 300-307
- Seção: Chemical Physics of Polymer Materials
- URL: https://journals.rcsi.science/1990-7931/article/view/200436
- DOI: https://doi.org/10.1134/S1990793118020185
- ID: 200436
Citar
Resumo
The thermal decomposition of polyethylene and butadiene rubber chains in the presence of a tensile force acting along the axis of the molecule was simulated. The reaction of an isolated chain was considered. The chain models were the octane and 2,6-octadiene molecules. A deformation was introduced in the problem by fixing nonequilibrium distances between the terminal carbon atoms. The reaction coordinate (the middle C–C bond length R) was scanned at a fixed length of the molecule (L). That is, the potential energy surface section of the reaction was constructed at L = const. The reaction sensitivity to deformation was evaluated by B3LYP, LC-ωPBE, CCSD(T), CASSCF, and MP2 quantum-chemical calculations. All these calculations showed that the molecule elongated by ~1 Å for polyethylene, but shortened by 0.3–0.5 Å for 2,6-octadiene during chain scission. This means that the tensile deformation accelerates the decomposition of polyethylene, but decelerates the decomposition of butadiene rubber.
Palavras-chave
Sobre autores
B. Krisyuk
Institute of Problems of Chemical Physics
Autor responsável pela correspondência
Email: bkris@mail.ru
Rússia, Chernogolovka, Moscow oblast, 142432
E. Mamin
Plekhanov Russian University of Economics; Emanuel Institute of Biochemical Physics
Email: bkris@mail.ru
Rússia, Moscow, 117997; Moscow, 119334
A. Popov
Plekhanov Russian University of Economics; Emanuel Institute of Biochemical Physics
Email: bkris@mail.ru
Rússia, Moscow, 117997; Moscow, 119334
Arquivos suplementares
