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A polymeric nanocomposite system for potential adhesive applications in restorative dentistry

机译:一种聚合物纳米复合材料系统,用于修复牙科的潜在粘合剂应用

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摘要

This article presents and discusses the preliminary results obtained as a continuation of a work aiming to contribute to the effort of exploring the potential of certain types of polymer nanocomposites to be successful candidates in new fields such as dental restoration. An epoxy-functional silicate-/Zr-based polymeric nanocomposite material system containing phosphorus was obtained via a sol-gel method, and applied to bring about a bonding between bovine teeth and feldspathic ceramic discs with or without the use of visible light (VL)-curing process. Infrared spectroscopy was employed to show the presence of phosphorus within the structure. Mechanical tests were performed to determine the shear-bond strength of the nanocomposite adhesive system developed. An approximate shear-bond strength value of 0.4MPa was obtained for both VL-cured and uncured systems. Though this value was lower than that of commercially available material systems, it was promisingly comparable to them. Another significant finding was that the material system developed within the study might potentially eliminate the use of curing process. Also, it was demonstrated that the general problem of shrinkage-upon-polymerization' could be overcome by use of a polymeric nanocomposite adhesive material system of this type. Overall results indicated that this polymeric nanocomposite system could indeed be potentially considered as an adhesive alternative in prospective dental restoration applications.
机译:本文介绍并讨论了作为一项工作的延续所获得的初步结果,该工作旨在为探索某些类型的聚合物纳米复合材料在牙齿修复等新领域取得成功的潜力做出贡献。采用溶胶-凝胶法制备了一种含磷环氧官能团硅酸盐/Zr基高分子纳米复合材料体系,并采用或不采用可见光固化工艺,实现牛牙与长石陶瓷盘之间的粘合。采用红外光谱法显示结构内磷的存在。通过力学试验,确定所开发的纳米复合胶粘剂体系的剪切粘合强度。VL固化和未固化体系的剪切结合强度值均约为0.4MPa。虽然这个值低于市售材料系统,但它很有希望与它们相媲美。另一个重要发现是,研究中开发的材料系统可能会消除固化工艺的使用。此外,还证明了通过使用这种类型的聚合物纳米复合粘合剂材料体系可以克服聚合收缩的一般问题。总体结果表明,这种聚合物纳米复合材料系统确实可以被视为未来牙科修复应用中的粘合剂替代品。

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