Determination of rate constants of benzoyl peroxide and azobisisobutyronitrile dissociation via polymerization kinetics
Siew‐Cheok Ng, K. K. Chee
Abstract
Siew‐Cheok Ng, K. K. Chee
Abstract
Abstract A linear expression is derived from Tobolsky's equation related to the dead‐end polymerization method to determine the rate constant for the initiator dissociation. This novel graphical method applies remarkably well to the kinetic data collected by dilatometry from the polymerization of methyl methacrylate initiated by 2,2′‐azobisisobutyronitrile and benzoyl peroxide in toluene at 60°C. Results obtained for these two initiators are consistent with those published in the literature. Applicability of the method is confined to at least 5% and at most 13% decomposition of initiator. However, these limiting values are sensitive to the experimental techniques employed. The effects of induced decomposition of benzoyl peroxide and thermal polymerization of methyl methacrylate are shown to be negligible in the present investigations.
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Abstract A linear expression is derived from Tobolsky's equation related to the dead‐end polymerization method to determine the rate constant for the initiator dissociation. This novel graphical method applies remarkably well to the kinetic data collected by dilatometry from the polymerization of methyl methacrylate initiated by 2,2′‐azobisisobutyronitrile and benzoyl peroxide in toluene at 60°C. Results obtained for these two initiators are consistent with those published in the literature. Applicability of the method is confined to at least 5% and at most 13% decomposition of initiator. However, these limiting values are sensitive to the experimental techniques employed. The effects of induced decomposition of benzoyl peroxide and thermal polymerization of methyl methacrylate are shown to be negligible in the present investigations.
Key concepts: Azobisisobutyronitrile, Benzoyl peroxide, Polymerization, Chemistry, Peroxide, Polymer chemistry, Reaction rate constant, Organic peroxide