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基于重氮化学的金属-复合材料黏附。

Metal-composite adhesion based on diazonium chemistry.

机构信息

Faculty of Dentistry, McGill University, Montreal, QC, Canada.

Faculty of Dentistry, McGill University, Montreal, QC, Canada; College of Applied Medical Sciences, King Saud University, Riyadh, Saudi Arabia.

出版信息

Dent Mater. 2017 Nov;33(11):e393-e404. doi: 10.1016/j.dental.2017.07.017. Epub 2017 Aug 7.

Abstract

OBJECTIVE

Composite resins do not adhere well to dental alloys. This weak bond can result in failure at the composite-metal interface in fixed dental prostheses and orthodontic brackets. The aim of this study was to develop a new adhesive, based on diazonium chemistry, to facilitate chemical bonding between dental alloys and composite resin.

METHODS

Samples of two types of dental alloys, stainless steel and cobalt chromium were primed with a diazonium layer in order to create a surface coating favorable for composite adhesion. Untreated metal samples served as controls. The surface chemical composition of the treated and untreated samples was analyzed by X-ray photoelectron spectroscopy (XPS) and the tensile strength of the bond with composite resin was measured. The diazonium adhesive was also tested for shear bond strength between stainless steel orthodontic brackets and teeth.

RESULTS

XPS confirmed the presence of a diazonium coating on the treated metals. The coating significantly increased the tensile and shear bond strengths by three and four folds respectively between the treated alloys and composite resin.

CONCLUSION

diazonium chemistry can be used to develop composite adhesives for dental alloys.

SIGNIFICANCE

Diazonium adhesion can effectively achieve a strong chemical bond between dental alloys and composite resin. This technology can be used for composite repair of fractured crowns, for crown cementation with resin based cements, and for bracket bonding.

摘要

目的

复合树脂与牙科合金的黏附性不佳。这种弱黏附力可能导致固定义齿和正畸托槽中的复合-金属界面失效。本研究旨在开发一种基于重氮化学的新型黏合剂,以促进牙科合金与复合树脂之间的化学结合。

方法

用重氮层对两种类型的牙科合金(不锈钢和钴铬)进行预处理,以形成有利于复合黏附的表面涂层。未处理的金属样品作为对照。通过 X 射线光电子能谱(XPS)分析处理和未处理样品的表面化学成分,并测量与复合树脂的黏接拉伸强度。还测试了重氮黏合剂在不锈钢正畸托槽和牙齿之间的剪切黏接强度。

结果

XPS 证实了处理过的金属表面存在重氮涂层。该涂层显著提高了处理后的合金与复合树脂之间的拉伸和剪切黏接强度,分别提高了三倍和四倍。

结论

重氮化学可用于开发牙科合金的复合黏合剂。

意义

重氮黏附可有效实现牙科合金与复合树脂之间的强化学结合。该技术可用于复合修复牙冠断裂、用树脂基黏固剂黏固牙冠,以及托槽黏接。

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