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J Dent Res Dent Clin Dent Prospects. 2015;9(4): 226-232. doi: 10.15171/joddd.2015.041
PMID: 26889359        PMCID: PMC4753031

Original Research

Evaluation of Polymerization Efficacy in Composite Resins via FT-IR Spectroscopy and Vickers Microhardness Test

Tahereh-Sadat Jafarzadeh 1, Mohammad Erfan 2 * , Marjan Behroozibakhsh 3, Mostafa Fatemi 3, Reza Masaeli 4, Yashar Rezaei 5, Hossein Bagheri 6, Yasaman Erfan 7

Cited by CrossRef: 13


1- Su Y, Zhang C, Liu S, Pang L, Lin H, Zhi Q. Effect of Thermal Cycling Aging on the Surface Microhardness and Roughness of Resin-Infiltrated Enamel Lesions. sci adv mater. 2021;13(3):356 [Crossref]
2- Prochnow F, Kunz P, Correr G, Kaizer M, Gonzaga C. Relationship between battery level and irradiance of light-curing units and their effects on the hardness of a bulk-fill composite resin. Restor Dent Endod. 2022;47(4) [Crossref]
3- Duman A, Cevik P, Doğan A. The Effect of the Resin Type and Filling Placement Techniques on the Degree of Conversion of Various Resin-Based Composites. Applied Sciences. 2024;14(23):11215 [Crossref]
4- Karatas O, Yilmaz M, Gul P, Sagsoz O, Yapar M. The effect of different curing units on the degree of polymerization of different composite resins. 2021;13(1):31 [Crossref]
5- Jucius D, Lazauskas A, Grigaliūnas V, Abakevičienė B, Smetona S, Tamulevičius S. UV-NIL replication of microlens arrays on flexible fluoropolymer substrates. Microsyst Technol. 2018;24(2):1115 [Crossref]
6- Ardestani S, Bonan R, Mota M, Farias R, Menezes R, Bonan P, Maciel P, Ramos-Perez F, Batista A, da Cruz Perez D. Effect of the incorporation of silica blow spun nanofibers containing silver nanoparticles (SiO2/Ag) on the mechanical, physicochemical, and biological properties of a low-viscosity bulk-fill composite resin. Dental Materials. 2021;37(10):1615 [Crossref]
7- Alzaidy A, Abd-alla M. The effect of different curing distances on the microhardness of flowable bulk-fill composite materials. J Bagh Coll Dent. 2023;35(4):20 [Crossref]
8- Iordache S, Iordache A, Gatin D, Grigorescu C, Ilici R, Luculescu C, Gatin E. Performance Assessment of Three Similar Dental Restorative Composite Materials via Raman Spectroscopy Supported by Complementary Methods Such as Hardness and Density Measurements. Polymers. 2024;16(4):466 [Crossref]
9- AUNG S, TAKAGAKI T, IKEDA M, NOZAKI K, BURROW M, ABDOU A, NIKAIDO T, TAGAMI J. The effect of different light curing units on Vickers microhardness and degree of conversion of flowable resin composites. Dent Mater J. 2021;40(1):44 [Crossref]
10- Ghavami-Lahiji M, Firouzmanesh M, Bagheri H, Jafarzadeh Kashi T, Razazpour F, Behroozibakhsh M. The effect of thermocycling on the degree of conversion and mechanical properties of a microhybrid dental resin composite. Restor Dent Endod. 2018;43(2) [Crossref]
11- Behroozian A, Rezaei Y, Abdulkarim B, Moghaddam S. Contrary to an old belief, four corner curing does not provide more bond strength or polymerization in bonding of orthodontic metal brackets. APOS. 2022;12:157 [Crossref]
12- Al-Qahatani Y, Al-Omari M, Mathew S, Al-Qarni M. Degree of Conversion of Nanoceramic and Microhybrid Composites Activated by Different Polymerization Modes at Different Intervals: An In Vitro Comparative Study . 2020;21(1):22 [Crossref]
13- Madihi N, Hoorizad ganjkar M, Nasoohi N, Kaboudanian Ardestani A. Effect of Polywave and Monowave Light Curing Units on Color Change of Composites Containing Trime-thylbenzoyl-Diphenyl-Phosphine Before and After Aging. J Res Dent Maxillofac Sci. 2023;8(4):249 [Crossref]