Synthesis and unusual crystallization behaviour of a novel aryl ether ketone polymer

J. J. Liggat, P. A. Staniland

Research output: Contribution to journalArticle

22 Citations (Scopus)

Abstract

The synthesis of a novel aryl ether ketone polymer with an advantageous ratio glass transition temperature to melting temperature is reported. The uniqueness of the polymer lies, however, in its crystallization behaviour which displays an unexpected inversion in crystallization rate.

Original languageEnglish
Pages (from-to)450-452
Number of pages3
JournalPolymer Communications
Volume32
Issue number15
Publication statusPublished - 1 Dec 1991

Fingerprint

Crystallization
Ketones
Ether
Ethers
Polymers
Melting point
Glass transition temperature

Keywords

  • crystallization
  • polymers - glass transition
  • Polymers
  • crystallization behaviour

Cite this

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title = "Synthesis and unusual crystallization behaviour of a novel aryl ether ketone polymer",
abstract = "The synthesis of a novel aryl ether ketone polymer with an advantageous ratio glass transition temperature to melting temperature is reported. The uniqueness of the polymer lies, however, in its crystallization behaviour which displays an unexpected inversion in crystallization rate.",
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Synthesis and unusual crystallization behaviour of a novel aryl ether ketone polymer. / Liggat, J. J.; Staniland, P. A.

In: Polymer Communications, Vol. 32, No. 15, 01.12.1991, p. 450-452.

Research output: Contribution to journalArticle

TY - JOUR

T1 - Synthesis and unusual crystallization behaviour of a novel aryl ether ketone polymer

AU - Liggat, J. J.

AU - Staniland, P. A.

PY - 1991/12/1

Y1 - 1991/12/1

N2 - The synthesis of a novel aryl ether ketone polymer with an advantageous ratio glass transition temperature to melting temperature is reported. The uniqueness of the polymer lies, however, in its crystallization behaviour which displays an unexpected inversion in crystallization rate.

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KW - crystallization

KW - polymers - glass transition

KW - Polymers

KW - crystallization behaviour

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M3 - Article

VL - 32

SP - 450

EP - 452

JO - Polymer Communications

JF - Polymer Communications

SN - 0263-6476

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