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Synthesis and formulation of vinyl-containing polyacids for improved light-cured glass-ionomer cements
Authors:Wei Wu  Aaron Puckett
Institution:a Materials Science Program, School of Engineering, The University of Alabama at Birmingham, Birmingham, AL 35294, USA
b Department of Biomedical Engineering, The University of Alabama at Birmingham, Birmingham, AL 35294, USA
c Department of Biomaterials, The University of Mississippi Medical Center, Jackson, MS 39216, USA
d Department of Chemistry, University of Tennessee, Knoxville, TN 37996, USA
Abstract:Vinyl-containing poly(acrylic acid-co-itaconic acid) copolymers were synthesized and used to formulate light-curable cements containing reactive glass fillers (Fuji II LC). The conditions for light curing were studied and optimized. Effects of molecular weight (MW), grafting ratio, comonomer, liquid composition, powder/liquid (P/L) ratio, glass powder and aging were evaluated. The results show that the vinyl-containing glass-ionomer cements (GICs) prepared in this study exhibit higher compressive strength (CS, 225.6 MPa), diametral tensile strength (DTS, 28.4 MPa) and much higher flexural strength (FS, 116.4 MPa), as compared to commercial Fuji II LC GIC (186.6 in CS, 19.1 in DTS and 57.1 in FS). The optimal light-exposure time was found to be around 10 min, and concentrations of CQ and DC were 0.5% (by weight) and 1.0%, respectively. Effects of MW, grafting ratio, P/L ratio and content of polymer in the liquid formulation were significant. The highest strengths were found for the optimal formulations where the MW was 15,000 (weight average), grafting ratio 25 mol%, P/L ratio 2.7 and liquid composition 50:20:30. During aging, the cement showed an increase of strength over the first week and then no change for a month. SEM analysis suggests that more integrated microstructures and smaller glass particles can lead to higher FS and higher polymer content in GICs leads to tough fracture surface and plastic deformation.
Keywords:Vinyl-containing polyacids  Light-cured glass-ionomer cement  Comonomer  Synthesis  Formulation  Flexural strength
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