4.6 Article

Influence of Cold Atmospheric Plasma on Surface Characteristics and Bond Strength of a Resin Nanoceramic

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MATERIALS
卷 16, 期 1, 页码 -

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MDPI
DOI: 10.3390/ma16010044

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resin nanoceramic; shear bond strength; cold atmospheric plasma; surface wettability

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The purpose of this study was to investigate the effect of cold atmospheric plasma (CAP) treatment on resin nanoceramic (RNC) surface state and its bond strength with resin cement. Different surface treatments were performed on RNC samples, including sandblasting treatment (SB), hydrofluoric acid etching (HF), and plasma treatment of helium gas (CAP-He) and argon gas (CAP-Ar). The results showed that CAP treatment improved the surface wettability and bond strength of RNC, with CAP-Ar combined with silane coupling agent showing the highest bond strength.
The purpose of this study was to investigate the effect of cold atmospheric plasma (CAP) treatment on resin nanoceramic (RNC) surface state and its bond strength with resin cement. RNC with different surface treatments were prepared: control, sandblasting treatment (SB), hydrofluoric acid etching (HF) and plasma treatment of helium gas (CAP-He) and argon gas (CAP-Ar). The prepared samples were measured by SEM, Ra, Rz, contact angle goniometer, and XPS for surface characteristics. The shear bond test of RNC was examined in nine groups: SB + saline coupling agent (SL), HF + SL, CAP-He/Ar, CAP-He/Ar + SL, SB + CAP-He/Ar + SL, and control. The bond strength between RNC and resin cement was compared using shear bond strength test, before and after thermocycling. After CAP irradiation, the surface topography maintained, while the surface water contact angle was significantly reduced to 10.18 degrees +/- 1.36 degrees (CAP-He) and 7.58 degrees +/- 1.79 degrees (CAP-Ar). The removal of carbon contamination and inducing of oxygen radicals was detected after CAP treatment. The bond strength was improved by CAP treatment, but varied on CAP gas species and combination methods. CAP of Ar gas had better SBS than He gas. After thermocycling, CAP-Ar + SL showed the maximized shear bond strength (32.38 +/- 1.42 MPa), even higher than SB + SL group (30.08 +/- 2.80 MPa, p < 0.05). In conclusion, CAP treatment of helium and argon can improve the bonding properties of RNC by improving surface wettability, and CAP of argon gas combined with silane coupling agent shows the highest bond strength.

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