## Abstract The solvent molecules included in the clathrates (Ξ΄βform) of syndiotactic polystyrene (sβPS) are removed by suitable extraction procedures. An emptied Ξ΄βform is produced which is different from the known Ξ³βform obtained by heating. The structural changes induced by thermal treatments on
Vapor sorption in emptied clathrate samples of syndiotactic polystyrene
β Scribed by C. Manfredi; M. A. Del Nobile; G. Mensitieri; G. Guerra; M. Rapacciuolo
- Publisher
- John Wiley and Sons
- Year
- 1997
- Tongue
- English
- Weight
- 155 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0887-6266
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β¦ Synopsis
The analysis of chloroform vapor sorption at 35ΠC in semicrystalline syndiotactic polystyrene samples shows remarkably different sorption isotherms, depending on the crystalline form of the samples. In particular, ''emptied'' clathrate (''emptied'' d form) samples are characterized by higher equilibrium sorption levels and the differences are particularly relevant for low vapor activities. Moreover, sorption kinetics detected at a vapor activity equal to 0.5 show that in the case of ''emptied'' d form samples the sorption rate is much higher than for the other semicrystalline samples. The larger sorption equilibrium uptakes and sorption rates of the ''emptied'' d form samples are essentially due to their ability to absorb chloroform, already for low activities, by clathration in the crystalline phase. The measured equilibrium uptakes and sorption kinetics suggest that ''emptied'' d form samples of syndiotactic polystyrene could be suitable for removing polluting chlorinated compounds from vapor and liquid streams.
π SIMILAR VOLUMES
## Abstract **Summary:** Selective absorption uptake during the guestβexchange processes in the __Ξ΄__ form of syndiotactic polystyrene (sPS) was confirmed by IR spectroscopy. When films of the __Ξ΄__ form were immersed in hexane/decane or chloroform/decane mixtures, decane molecules were incorporate
## Abstract **Summary:** ^2^H NMR solidβstate spectra of aromatic molecules (benzene, toluene, chlorobenzene, naphthalene) included in clathrate phases of syndiotactic polystyrene (sβPS) or absorbed in the amorphous phase of sβPS, have been recorded and analyzed for a broad range of temperature (23
Fourier transform infrared (FTIR) spectra of syndiotactic polystyrene (s-PS) semicrystalline samples have been examined by using the spectral subtraction approach. For the crystalline forms including trans-planar chains (trigonal a and orthorhombic b) a number of conformational and structural order