Literature DB >> 22300801

Characterization of micro- and nanophase separation of dentin bonding agents by stereoscopy and atomic force microscopy.

Manuel Toledano1, Monica Yamauti, Estrella Osorio, Francesca Monticelli, Raquel Osorio.   

Abstract

The aim was to study the effect of solvents on the phase separation of four commercial dental adhesives. Four materials were tested: Clearfil™ SE Bond (CSE), Clearfil Protect Bond (CPB), Clearfil S3 Bond (CS3), and One-Up Bond F Plus (OUB). Distilled water or ethanol was used as a solvent (30 vol%) for microphase separation studies, by stereoscopy. For nanophase images, the mixtures were formulated with two different solvent concentrations (2.5 versus 5 vol%) and observed by atomic force microscopy. Images were analyzed by using MacBiophotonics ImageJ to measure the area of bright domains. Macrophase separations, identified as a loss of clarity, were only observed after mixing the adhesives with water. Nanophase separations were detected with all adhesive combinations. The area of bright domains ranged from 132 to 1,145 nm² for CSE, from 15 to 285 nm² for CPB, from 149 to 380 nm² for CS3, and from 26 to 157 nm² for OUB. In water-resins mixtures, CPB was the most homogeneous and OUB showed the most heterogeneous phase formation. In ethanol-resin mixtures, CSE attained the most homogeneous structure and OUB showed the most heterogeneous phase. Addition of 5 vol% ethanol to resins decreased the nanophase separation when compared with the control materials.

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Year:  2012        PMID: 22300801     DOI: 10.1017/S1431927611012621

Source DB:  PubMed          Journal:  Microsc Microanal        ISSN: 1431-9276            Impact factor:   4.127


  6 in total

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4.  Polymerization behavior of hydrophilic-rich phase of dentin adhesive.

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Journal:  J Dent Res       Date:  2015-01-09       Impact factor: 6.116

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Journal:  J Biomed Mater Res B Appl Biomater       Date:  2015-09-04       Impact factor: 3.368

6.  Autonomous-Strengthening Adhesive Provides Hydrolysis-Resistance and Enhanced Mechanical Properties in Wet Conditions.

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  6 in total

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