## Abstract ## Aims: The study evaluated the influence of light curing units and immersion media on superficial morphology and chemistry of the nanofilled composite resin Supreme XT (3M) through the EDX analysis and SEM evaluation. Light curing units with different power densities and mode of appl
Chemical and morphological features of nanofilled composite resin: Influence of finishing and polishing procedures and fluoride solutions
✍ Scribed by Ana Luísa Botta Martins de Oliveira; Patrícia Aleixo Dos Santos Domingos; Regina Guenka Palma-Dibb; Patrícia Petromilli Nordi Sasso Garcia
- Publisher
- John Wiley and Sons
- Year
- 2011
- Tongue
- English
- Weight
- 601 KB
- Volume
- 75
- Category
- Article
- ISSN
- 1059-910X
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✦ Synopsis
Abstract
This study evaluated the influence of finishing and polishing procedures and different fluoride solutions on superficial morphology and chemistry of the nanofilled composite resin Supreme XT (3M) through the EDX analysis and SEM evaluation. Circular specimens (n = 30) of 10 mm diameter and 2 mm thickness were prepared, with half of the sample assays finished and polished with Super‐Snap® sandpaper. The experimental groups were divided according to the presence or absence of finishing and polishing and solutions (artificial saliva, 0.05% of manipulated sodium fluoride solution, Fluordent Reach, Oral B, Fluorgard). Specimens were immersed in each respective solution for 1 min per day, during 60 days and stored in artificial saliva at 37 ± 1°C between immersion periods. Topography and chemical analysis was qualitative. It was observed that specimens submitted to finishing and polishing procedures had lower superficial degradation. Fluoride solutions promoted superficial alterations on specimens, being the highest degradation obtained with Fluordent Reach. It can be concluded that finishing and polishing procedures and the immersion media influence the superficial morphology of composite resin tested; the Fluordent Reach was the fluoride solution that most affected the material's surface. Microsc. Res. Tech. 2011., © 2011 Wiley Periodicals, Inc.
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