1 |
Surface roughness and morphology of dental nanocomposites polished by four different procedures evaluated by a multifractal approach Talu S, Stach S, Lainovic T, Vilotic M, Blazic L, Alb SF, Kakas D Applied Surface Science, 330, 20, 2015 |
2 |
Preparation and Evaluation of Dental Resin with Antibacterial and Radio-Opaque Functions He JW, Soderling E, Vallittu PK, Lassila LVJ International Journal of Molecular Sciences, 14(3), 5445, 2013 |
3 |
The use of poly(ethylene oxide) as hydrogen donor in type II photoinitiated free radical polymerization Tasdelen MA, Moszner N, Yagci Y Polymer Bulletin, 63(2), 173, 2009 |
4 |
Effect of Bleaching on Roughness of Dental Composite Resins Dogan A, Ozcelik S, Dogan OM, Hubbezoglu I, Cakmak M, Bolayir G Journal of Adhesion, 84(11), 899, 2008 |
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Comparison of the metrics between the CIELAB and the DIN99 uniform color spaces using dental resin composite material values Lee YK, Powers JM Color Research and Application, 31(3), 168, 2006 |
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Photopolymerization kinetics of dimethacrylate-based light-cured dental resins Davidenko N, Garcia O, Sastre R Journal of Applied Polymer Science, 97(3), 1016, 2005 |
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Aspects of the photopolymerization of a commercial dental resin studied by H-1 magnetic resonance imaging Guillot G, Nunes TG, Ruaud JP, Polido W Polymer, 45(16), 5525, 2004 |
8 |
Dimethacrylate계 희석제를 사용한 가시광선 중합형의 고분자계 치과용 레진의 물성에 관한 연구 김오영 Journal of the Korean Industrial and Engineering Chemistry, 14(4), 451, 2003 |
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Using oscillatory squeezing flow to measure the viscoelastic properties of dental composite resin cements during curing Jiang P, See H, Swain MV, Phan-Thien N Rheologica Acta, 42(1-2), 118, 2003 |
10 |
Properties of 2,3-butanedione and 1-phenyl-1,2-propanedione as new photosensitizers for visible light cured dental resin composites Sun GJ, Chae KH Polymer, 41(16), 6205, 2000 |