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Micro-Raman Vibrational Identification of 10-MDP Bond to Zirconia and Shear Bond Strength Analysis

机译:氧化锆10-MDP键的微拉振动识别和剪切键强度分析

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摘要

So far, there is no report regarding the micro-Raman vibrational fingerprint of the bonds between 10-methacryloyloxy-decyl dihydrogen phosphate (10-MDP) and zirconia ceramics. Thus, the aim of this study was to identify the Raman vibrational peaks related to the bonds of 10-MDP with zirconia, as well as the influence on microshear bond strength. Micro-Raman spectroscopy was employed to assess the vibrational peak of 10-MDP binding to zirconia. Microshear bond strength of the dual-cure resin cement to zirconia with the presence of 10-MDP in composition of experimental ceramic primer and self-adhesive resin cement was also surveyed. Statistical analysis was performed by one-way ANOVA and Tukey's test (p < 0.05). Peaks at 1545 cm−1 and 1562 cm−1 were found to refer to zirconia binding with 10-MDP. The presence of 10-MDP in both experimental ceramic primer and self-adhesive resin cement improved microshear bond strength to zirconia ceramic. It can be concluded that the nondestructive method of micro-Raman spectroscopy was able to characterize chemical bonds of 10-MDP with zirconia, which improves the bond strengths of resin cement.
机译:到目前为止,还没有关于10-甲基丙烯酰氧基-癸基磷酸二氢酯(10-MDP)与氧化锆陶瓷之间的键的微拉曼振动指纹的报道。因此,本研究的目的是确定与10-MDP与氧化锆键相关的拉曼振动峰,以及对微剪切键强度的影响。显微拉曼光谱法用于评估10-MDP与氧化锆结合的振动峰。在实验陶瓷底漆和自粘树脂水泥的组成中,还研究了在10-MDP存在下双固化树脂水泥对氧化锆的微剪切粘结强度。通过单因素方差分析和Tukey检验进行统计学分析(p <0.05)。发现在1545 cm -1 和1562 cm -1 的峰是指氧化锆与10-MDP的结合。在实验陶瓷底漆和自粘树脂胶粘剂中都存在10-MDP,可以提高对氧化锆陶瓷的微剪切粘结强度。可以得出结论,显微拉曼光谱法的非破坏性方法能够表征10-MDP与氧化锆的化学键,从而提高了树脂水泥的键合强度。

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