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Original Article

Hardness of restorative resins: effect of camphorquinone, amine, and inhibitor

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Pages 229-231 | Received 05 Apr 1988, Published online: 02 Jul 2009

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Read on this site (3)

Erik Asmussen & Anne Peutzfeldt. (2002) Influence of composition on rate of polymerization contraction of light-curing resin composites. Acta Odontologica Scandinavica 60:3, pages 146-150.
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Erik Asmussen & Anne Peutzfeldt. (1999) Direction of shrinkage of light-curing resin composites. Acta Odontologica Scandinavica 57:6, pages 310-315.
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Articles from other publishers (21)

Michael Zanon, Désirée Baruffaldi, Marco Sangermano, Candido Fabrizio Pirri, Francesca Frascella & Annalisa Chiappone. (2021) Visible light-induced crosslinking of unmodified gelatin with PEGDA for DLP-3D printable hydrogels. European Polymer Journal 160, pages 110813.
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J. Volk, C. Ziemann, G. Leyhausen & W. Geurtsen. (2018) Genotoxic and mutagenic potential of camphorquinone in L5178/TK+/− mouse lymphoma cells. Dental Materials 34:3, pages 519-530.
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Aline B. Denis, Cristina A. Diagone, Ana M. G. Plepis & Rommel B. Viana. (2016) Kinetic Parameters during Bis-GMA and TEGDMA Monomer Polymerization by ATR-FTIR: The Influence of Photoinitiator and Light Curing Source. Journal of Spectroscopy 2016, pages 1-8.
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Aldossary Mohammed & Santini Ario. (2015) Resin-Based Composite and LCU-related Factors Affecting the Degree of Cure. A Literature Review: Part 2. Light Curing Units & Related Factors. Acta Medica Marisiensis 61:4, pages 255-260.
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Ah-Hyang EomDuck-Su KimSoo-Hee LeeChang-Won ByunNoh-Hoon ParkKyoung-Kyu Choi. (2011) Optical characteristics of resin composite before and after polymerization. Journal of Korean Academy of Conservative Dentistry 36:3, pages 219.
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Luis Felipe J. Schneider, Carmem S.C. Pfeifer, Simonides Consani, Scott A. Prahl & Jack L. Ferracane. (2008) Influence of photoinitiator type on the rate of polymerization, degree of conversion, hardness and yellowing of dental resin composites. Dental Materials 24:9, pages 1169-1177.
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Norbert Moszner, Urs Karl Fischer, Beate Ganster, Robert Liska & Volker Rheinberger. (2008) Benzoyl germanium derivatives as novel visible light photoinitiators for dental materials. Dental Materials 24:7, pages 901-907.
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Ma'an M. NAYIF, Masatoshi NAKAJIMA, Richard M. FOXTON & Junji TAGAMI. (2007) Effect of Light Irradiation Time on the Mechanical Properties of Two Flowable Composites with Different Initiation Systems in Bonded and Unbonded Cavities. Dental Materials Journal 26:5, pages 687-693.
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Franciszek Ścigalski, Magdalena Kryszak, Beata Jędrzejewska & Jerzy Pączkowski. (2006) Onium Salts of Amino Acids as Co‐Initiators in Photoinduced Free‐Radical Polymerization. Macromolecular Materials and Engineering 291:10, pages 1179-1184.
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N. Davidenko, O. García & R. Sastre. (2005) Photopolymerization kinetics of dimethacrylate‐based light‐cured dental resins. Journal of Applied Polymer Science 97:3, pages 1016-1023.
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Soo-Kyung ChoDong-Jun KimYun-Chan HwangWon-Mann OhIn-Nam Hwang. (2005) Surface hardness of the dental composite cured by light that penetrate tooth structure according to thickness of tooth structure, light intensity and curing time. Journal of Korean Academy of Conservative Dentistry 30:2, pages 128.
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Karen A Schulze, Sally J Marshall, Stuart A Gansky & Grayson W Marshall. (2003) Color stability and hardness in dental composites after accelerated aging. Dental Materials 19:7, pages 612-619.
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Joon-Sok NaSun-Wa JeongYun-Chan HwangSun-Ho KimChang YunWon-Mann OhIn-Nam Hwang. (2002) Effect of light source and shade on depth of cure of composites. Journal of Korean Academy of Conservative Dentistry 27:6, pages 561.
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Jun Nie, Jan F Rabek & Lars-Åke Lindén. (1999) Photopolymerization of poly(melamine-co-formaldehyde) acrylate for dental restorative resins. Polymer International 48:2, pages 129-136.
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Zdzisław Kucybała, Marek Pietrzak & Jerzy Pa̧czkowski. (1998) Development of New Dyeing Photoinitiators Based on Azomethine Dyes. Chemistry of Materials 10:11, pages 3555-3561.
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K. C. Kennedy & R. P. Kusy. (1998) Investigation of dual-staged polymerization and secondary forming of photopultruded, fiber-reinforced, methacrylate-copolymer composites. Journal of Biomedical Materials Research 41:4, pages 549-559.
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S Deb. (2016) Polymers in dentistry. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine 212:6, pages 453-464.
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Zdzisław Kucybaa̵, Marek Pietrzak, Jerzy Pączkowski, Lars-Åke Lindén & Jan F. Rabek. (1996) Kinetic studies of a new photoinitiator hybrid system based on camphorquinone-N-phenylglicyne derivatives for laser polymerization of dental restorative and stereolithographic (3D) formulations. Polymer 37:20, pages 4585-4591.
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K. Yoshida & E.H. Greener. (1994) Effect of photoinitiator on degree of conversion of unfilled light-cured resin. Journal of Dentistry 22:5, pages 296-299.
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S.-Y. Lee & E.H. Greener. (1994) Effect of excitation energy on dentine bond strength and composite properties. Journal of Dentistry 22:3, pages 175-181.
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K. Yoshida & E.H. Greener. (1993) Effects of two amine reducing agents on the degree of conversion and physical properties of an unfilled light-cured resin. Dental Materials 9:4, pages 246-251.
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