The influence of both temperature and time on the solid-solid transformation from tetragonal Form II mesophase to trigonal Form I crystals in isotactic poly(butene-1) and its random copolymers with ethylene has been evaluated. The polymers were isothermally crystallized and then annealed at temperatures ranging from -30 to +30 °C for various times, up to 24 h. Incorporation of ethylene co-units into isotactic poly(butene-1) not only leads to a faster solid-solid transformation rate, as already discussed in the literature, but it also affects the temperature of maximum transformation rate. For all the analyzed compositions, at the initial stage of the process, a maximum rate is observed upon annealing around -20°C, whereas when the transition proceeds to a later stage, it becomes much faster around +20°C. The occurrence of two maxima in the transformation-temperature profile has been correlated with a nucleation and growth mechanism for the Form II to Form I transition. The influence of ethylene co-units on the transformation rate has been rationalized taking into account the varied composition of the rigid amorphous portions at the lamellar basal planes of the crystals, which confirms the hypothesis of a connection between crystal lamellae rearrangements and the amorphous-crystal boundaries.

The irreversible Form II to Form i transformation in random butene-1/ethylene copolymers

Di Lorenzo ML;Righetti MC
2015-01-01

Abstract

The influence of both temperature and time on the solid-solid transformation from tetragonal Form II mesophase to trigonal Form I crystals in isotactic poly(butene-1) and its random copolymers with ethylene has been evaluated. The polymers were isothermally crystallized and then annealed at temperatures ranging from -30 to +30 °C for various times, up to 24 h. Incorporation of ethylene co-units into isotactic poly(butene-1) not only leads to a faster solid-solid transformation rate, as already discussed in the literature, but it also affects the temperature of maximum transformation rate. For all the analyzed compositions, at the initial stage of the process, a maximum rate is observed upon annealing around -20°C, whereas when the transition proceeds to a later stage, it becomes much faster around +20°C. The occurrence of two maxima in the transformation-temperature profile has been correlated with a nucleation and growth mechanism for the Form II to Form I transition. The influence of ethylene co-units on the transformation rate has been rationalized taking into account the varied composition of the rigid amorphous portions at the lamellar basal planes of the crystals, which confirms the hypothesis of a connection between crystal lamellae rearrangements and the amorphous-crystal boundaries.
2015
Istituto per i Processi Chimico-Fisici - IPCF
Istituto per i Polimeri, Compositi e Biomateriali - IPCB
Calorimetry
Crystallization
Isotactic poly(butene-1)
Polymorphism
Polyolefin
Random copolymer
Rigid amorphous fraction
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Descrizione: The irreversible Form II to Form i transformation in random butene-1/ethylene copolymers
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/293898
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