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The protopolymerization kinetics in the studied DRC is assumed to follow single-exponential rule as it can be reasonably expected from previous light-curing research for similar DRC of different thicknesses (tuning in such a way the penetration depth of curing light) [2, 28].
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The depth of cure was different for the experimental composites.
The composite C1 showed depth of cure of 1 mm for all photoactivation methods while C2 showed depth of cure of 2 mm.
The depth of cure test revealed significant difference among the photoactivation methods for C3 denying the hypothesis that photoactivation methods do not affect the depth of cure.
The effect of photoinitiator concentration was also evident in the depth of cure evaluation.
Higher concentration of photoinitiators (C2 and C3) increased the conversion degree and the depth of cure.
In addition, the depth of cure was also higher for C2 and C3 than for C1.
Were determined the degree of conversion (DC), depth of cure (DCure) and crosslink density (CLD).
Another aspect to discuss is depth of cure reached by specimen photoactivated using low irradiance.
The microhardness of a composite is directly related to the depth of cure of the restorative material.
Regarding this material, methods HI and SS showed depth of cure of 3 mm while PD and LI, 2 mm.
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CEO of Professional Science Editing for Scientists @ prosciediting.com