纳米膜涂层氧化锆陶瓷对树脂水泥粘结强度的影响。

Viviane Maria Gonçalves de Figueiredo, Alecsandro de Moura Silva, Marcos Massi, Argemiro Soares da Silva Sobrinho, José Renato Cavalcanti de Queiroz, João Paulo Barros Machado, Renata Falchete do Prado, Lafayette Nogueira Junior
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引用次数: 2

摘要

背景。人们提出了新的表面处理方法,以扩大氧化锆修复体的临床适应症。本研究旨在评价氧化锆陶瓷表面的二氧化硅和氟纳米膜对树脂水泥粘结强度的影响。方法。氧化锆块和氧化锆盘进行了不同的表面处理:未经处理的氧化锆(CON)、喷砂处理的氧化锆涂层氧化铝颗粒(30µm) (SC)、二氧化硅纳米膜(SN)和氟纳米膜(FN)。纳米膜的沉积是通过等离子体增强化学气相沉积(PECVD)进行的。通过形貌(原子力显微镜,AFM)、化学分析(x射线光电子能谱,XPS)和接触角分析对氧化锆表面进行了表征。在每个处理表面涂上硅烷偶联剂,形成一个圆柱体的树脂水泥。每组各有一半的标本接受6000个热循环(TC)。通过剪切试验分析了粘结强度,并用体视显微镜和SEM/EDS分析了断口形貌。采用单因素方差分析和Tukey检验对未老龄和老龄样本进行统计分析。结果。纳米膜修饰了氧化锆表面,使其具有更强的亲水性和化学活性。SN中发现了Si-O之间的化学键,FN促进了陶瓷表面的氟化过程,将氧化锆转化为氟化氧化锆。SN (TC)组样品预测失败。剪切后FN (TC)的粘结强度(3.8 MPa)低于SC (TC)和CON (TC)。实验组以粘接失效为主。老化后二氧化硅纳米膜失效。结论。PECVD沉积的二氧化硅和氟纳米膜不能促进氧化锆与树脂水泥之间的有效结合。
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Effect of the nanofilm-coated zirconia ceramic on resin cement bond strength.

Background. New surface treatments have been proposed to expand the clinical indications of zirconia prostheses. This study aimed to evaluate the effect of silica and fluorine nanofilms on zirconia ceramic on the resin cement bond strength. Methods. Zirconia blocks and discs underwent different surface treatments: untreated zirconia (CON), sandblasted, silica-coated alumina particles (30 µm) (SC), silica nanofilm (SN), and fluorine nanofilm (FN). Nanofilm deposition was performed through plasma enhanced chemical vapor deposition (PECVD). Zirconia surfaces were characterized on disks by morphology (atomic force microscopy, AFM), chemical analysis (x-ray photoelectron spectroscopy, XPS), and contact angle analysis. A silane coupling agent was applied on each treated surface, and a cylinder of resin cement was built up. Half of the specimens in each group were submitted to 6000 thermal cycles (TC). Bond strength was analyzed using the shear test, and the fractographic analysis was performed with stereomicroscopy and SEM/EDS. Statistical analysis was performed through one-way ANOVA and Tukey test in the non-aged and aged specimens. Results. Nanofilms modified the zirconia surface, which became more hydrophilic and chemically reactive. Chemical bonding between Si-O was found in SN, and FN promoted a fluorination process on the ceramic surface, converting zirconia into zirconium oxyfluoride. Specimens of the SN (TC) group failed on pre-testing. FN (TC) bond strength (3.8 MPa) was lower than SC (TC) and CON (TC) after shearing. Adhesive failure predominated in the experimental groups. Silica nanofilm failure occurred after aging. Conclusion. Silica and fluorine nanofilms deposited by PECVD did not promote effective bonding between zirconia and resin cement.

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来源期刊
CiteScore
1.40
自引率
0.00%
发文量
23
审稿时长
25 weeks
期刊介绍: Journal of Dental Research Dental Clinics Dental Prospects (JODDD) is a Platinum* Open Access, peer-reviewed quarterly indexed journal that publishes articles of basic, clinical, and prospective nature in all areas of dentistry and oral health.
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