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Marwa Saad

Publications and source records attributed to Marwa Saad.

2 recordsLinked to original sources

Phase Separation in Heritage Objects Made of Plasticised PVC: the Case of Joseph Beuys Multiples

This work addresses the advanced degradation of plasticised PVC boards, which constitute Joseph Beuys multiples Phosphorus-Cross Sled, focusing on the mechanisms responsible for the extensive exudation of a viscous liquid. A multi-analytical approach combining chromatographic, spectroscopic, microscopic, and mechanical techniques was employed to characterise both the exuded surface layer and the polymer bulk, and to evaluate the consequences of degradation for long-term mechanical behaviour. The experimental results are supported by density functional theory simulations, which indicate a thermodynamic driving force for plasticiser migration towards the PVC surface and its tendency to self-associate. These molecular-level insights provide a mechanistic explanation for the observed migration and exudation phenomena. Overall, the study outlines a coherent deterioration pathway for exudate-covered plasticised PVC. The application of NMR spectroscopy proved to be an efficient method for studying accelerated migration of the plasticiser in PVC, opening the path to the development of non-destructive, in situ preventive conservation tools, supporting the early identification of PVC artefacts or parts of a collection that are at risk of severe phase separation.

cond-mat.mtrl-sci

Effect of Accelerated Thermal Degradation of Poly(Vinyl Chloride): The Case of Unplasticized PVC

The thermal degradation of unplasticized poly(vinyl chloride), PVC, was comprehensively investigated through the application of spectroscopic techniques, as well as contact angle measurements (CA), dynamic mechanical analysis (DMA), and size-exclusion chromatography (SEC). To study the effect of relative humidity (RH) on the deterioration of unplasticized PVC, two regimes of accelerated degradation experiments were selected: low RH (max. 30% RH) and high RH = 60% levels, which corresponds to usually the highest RH in heritage institutions equipped with an HVAC system. Nuclear magnetic resonance (NMR) and infrared spectroscopy (FTIR) did not reveal any significant changes in the material during its degradation up to 20 weeks at temperatures ranging from 60°C to 80°C. Notable changes were observed in the Raman and UV-Vis spectra, indicative of the formation of conjugated carbon-carbon double bonds. The formation of polyenes was responsible for the yellowing of samples. Notwithstanding, the aforementioned changes did not lead to a notable decline in the mechanical properties, as evidenced by DMA and SEC measurements. EPR measurements demonstrated the formation of 2 radicals at 60°C, and in the sample degraded at 80°C the presence of radicals was evident. This indicates that a radical degradation mechanism cannot be excluded even at such low temperatures.

cond-mat.mtrl-sci