Molecular modelling of poly(aryl ether ketones). I. Aryl··aryl interactions in crystal structures
✍ Scribed by Raymond J. Abraham; Ian S. Haworth
- Book ID
- 104631583
- Publisher
- Springer Netherlands
- Year
- 1990
- Tongue
- English
- Weight
- 652 KB
- Volume
- 4
- Category
- Article
- ISSN
- 0920-654X
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✦ Synopsis
Non-bonded potentials for the aryl..aryl interaction have been derived using crystal structure data of a number of small aromatic molecules. The potentials, based on atom-centred interactions, give an accurate reproduction of the benzene crystal geometry and sublimation energy when used in conjunction with coulombic energies evaluated using point atomic charges. An examination of the charge distribution on benzene suggested values of 0.13e (H) and -0.13e (C) to be suitable. The transferability of the potentials has been shown by prediction of crystal geometries and sublimation energies of other hydrocarbon molecules and, with additional interactions for the oxygen atom included, preliminary polymer crystal structure calculations have been carried out. These demonstrate the validity of the derived parameters by successfully predicting crystallographic unit cell dimensions and ring conformations in the poly(phenylene oxide) and poly(aryl ether ketone) crystals.
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## Abstract The crystal structure of poly(aryl ether biphenyl ether ketone ketone) (PEDEKK) was determined to comprise a two‐chain orthorhombic unit cell with dimensions __a__ = 0.778 nm, __b__ = 0.606 nm and __c__ = 2.375 nm by using wide‐angle X‐ray diffraction (WAXD). According to the orthorhomb
## Abstract The molecular structure of a series of model compounds for poly(aryl ether ketone)s was investigated by means of ^13^C NMR spectroscopy, quantum chemical calculation, and wide‐angle X‐ray scattering. The comparison of the chemical shifts for the model compounds dissolved in 98% H~2~SO~4