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Molecular alignment during gel formation from methyl methacrylate: An excimer fluorescence study

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Informa UK Limited

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Glass transition during bulk polymerization was studied in free-radical cross-linking copolymerization (FCC) of methyl methacrylate (MMA) using the steady-state fluorescence (SSF) technique. Naphthalene (N) was used as a monomer and excimer forming probe. Changes in the viscosity of the pregel solutions due to gel formation dramatically enhance both monomer and excimer fluorescent yield of N molecules. The reaction time at which the monomer and excimer intensities exhibit a sudden increase corresponds to the reaction time at which the rate of polymerization becomes maximum resulting from the gel effect. This effect was used to study the gelation of MMA, as a function of time, in various N concentrations. The results were interpreted in the view of percolation theory. The gel fraction, β, and weight average degree of polymerization, γ, exponents β = 0.40 ± 0.02 and γ = 1.70 ± 0.07 were found in agreement with percolation results for both monomer and excimer measurements, respectively.

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Phase Transitions

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0141-1594

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CLOSED

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Gelation, Free radical polymerization, Critical Exponents, Rate constants, Gel Effect, Percolation, Liquids, Bulk, Probe, Fluorescence, Molecular orientation, Glass Transition, Glass-transition, Copolymerization, Fluorescence Excimer, Free-radical polymerization, Gels, Glass transition, Naphthalene, Excimer lasers

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