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Investigation of Residual Monomer in Microwave and Heat-polymerized Acrylates by a Procedure of Infrared Spectrophotometry

Ivan Alajbeg ; Dom zdravlja “INA”, Zagreb, Hrvatska
Vlado Carek ; Zavod za mobilnu protetiku Stomatološkog fakulteta Sveučilišta u Zagrebu i Klinički zavod za stomatološku protetiku KB “Dubrava”, Zagreb, Hrvatska
Vjekoslav Jerolimov ; Zavod za mobilnu protetiku Stomatološkog fakulteta Sveučilišta u Zagrebu i Klinički zavod za stomatološku protetiku KB “Dubrava”, Zagreb, Hrvatska
Vjera Urlić ; INA - Polimeri, Zagreb, Hrvatska
Ivo Baučić ; Zavod za fiksnu protetiku Stomatološkog fakulteta Sveučilišta u Zgrebu i Klinički zavod za stomatološku protetiku KB “Dubrava”, Zagreb, Hrvatska


Puni tekst: hrvatski pdf 8.784 Kb

str. 201-206

preuzimanja: 688

citiraj


Sažetak

The aim of the investigation was to determine the amount of residual
monomer (RM) in polymethylmethacrylate specimens. RM is a potential allergic and toxic agent, which weakens the mechanical properties of acrylic dentures. The specimens were prepared by different procedures, with regard to temperature, pressure and polymerization duration. One specimen was obtained by microwave procedure. In thisstudy the position o f microwave polymerized acrylate was determined in relation to heat curing method o f polymerization. All samples were prepared by extraction with methanol and dissolution with chloroform. RM was measured by infrared spectrophotometry. The results showed that the amount o f RM released by dissolution was several times greater than the amount released by extraction of the same specimen. Furthermore, it was demonstrated that heat-polymerized specimens showed the lowest values for RM, followed by the microwave-polymerized specimens, while the cold-polymerized specimens showed the greatest amount of RM.

Ključne riječi

acrylates; residual monomer; types of polymerization; infrared spectrophotometry

Hrčak ID:

99395

URI

https://hrcak.srce.hr/99395

Datum izdavanja:

15.9.1997.

Podaci na drugim jezicima: hrvatski

Posjeta: 1.706 *