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D’Amelia, R. P., Kreth, E. H., “Establishment of the Flory-Fox Equation for Polymethyl Methacrylate (PMMA) Using Differential Scanning Calorimetry (DSC) and Determination of Relative Tacticity Using Quantitative Nuclear Magnetic Resonance Spectroscopy (qHNMR)”, Journal of Polymer and Biopolymer Physics Chemistry, 11 (1). 1-10. July 2023.

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Article

Evaluation of the Flory-Fox Equation for the Relationship of Glass Transition Temperature (Tg) vs Molar Mass of Poly (tert-Butyl Methacrylate (PtBMA) Using Differential Scanning Calorimetry (DSC)

1Chemistry Department, Hofstra University, Hempstead,NY


Journal of Polymer and Biopolymer Physics Chemistry. 2025, Vol. 13 No. 1, 1-7
DOI: 10.12691/jpbpc-13-1-1
Copyright © 2025 Science and Education Publishing

Cite this paper:
Ronald P. D’Amelia, Julia Nastasi. Evaluation of the Flory-Fox Equation for the Relationship of Glass Transition Temperature (Tg) vs Molar Mass of Poly (tert-Butyl Methacrylate (PtBMA) Using Differential Scanning Calorimetry (DSC). Journal of Polymer and Biopolymer Physics Chemistry. 2025; 13(1):1-7. doi: 10.12691/jpbpc-13-1-1.

Correspondence to: Ronald  P. D’Amelia, Chemistry Department, Hofstra University, Hempstead,NY. Email: ronald.p.damelia@hofstra.edu

Abstract

Glass transition temperature (Tg), termed the “softening point of amorphous materials” is the temperature at which an amorphous material changes from a hard, glassy state to a soft, rubbery one. As the number-average molecular weight (Mn) of the amorphous material increases, its glass transition temperature also increases, but ultimately levels off asymptotically at a maximum value labeled Tg. Differential scanning calorimetry (DSC) was utilized to evaluate Tg for eight samples of poly t-butyl methacrylate (PtBMA) whose Mn values ranged from approximately 1K to 500K. These values were then plotted against reciprocal Mn, producing a Flory-Fox equation of Tg = 114.7°C – .55 x 10 5 C.g.mol-1/Mn, with a correlation coefficient of 0.98. These experiments demonstrate the quantitative applications of DSC in evaluating the Flory-Fox equation for Poly (t-Butyl Methacrylate (PtBMA) as well as its suitability within the undergraduate chemistry laboratory.

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