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10-甲基丙烯酰氧代癸基二氢磷酸酯对牙科氧化锆的化学亲和力:分子结构和溶剂的影响。

Chemical affinity of 10-methacryloyloxydecyl dihydrogen phosphate to dental zirconia: Effects of molecular structure and solvents.

机构信息

Jiangsu Key Laboratory of Oral Diseases, Nanjing Medical University, China; Department of Prosthodontics, Affiliated Hospital of Stomatology, Nanjing Medical University, Nanjing, China.

Jiangsu Key Laboratory of Oral Diseases, Nanjing Medical University, China; Department of Endodontics, Affiliated Hospital of Stomatology, Nanjing Medical University, Nanjing, China.

出版信息

Dent Mater. 2017 Dec;33(12):e415-e427. doi: 10.1016/j.dental.2017.09.013. Epub 2017 Oct 14.

Abstract

OBJECTIVES

To examine whether solvents and changing the molecular structure of 10-Methacryloyloxydecyl dihydrogen phosphate (10-MDP) affect its chemical affinity to Yttria-stabilized tetragonal zirconia polycrystals (Y-TZP).

METHODS

The present work investigated the chemical affinity between Y-TZP and 10-MDP dissolved in different solvents (acetone/ethanol/water or mixture) using X-ray photoelectron spectroscopy, Fourier-transform infrared spectroscopy, and thermodynamic calculations. Shear bond strength (SBS) tests were used to evaluate the influence of different solvents on 10-MDP bonding. In addition, several phosphate ester monomer variants were created by changing the 10-MDP molecular structure. Changes included extending/shortening the spacer chain-length, and installing hydroxyl or carboxyl groups as side chains at different positions along the spacer chain. The thermodynamic parameters of the complexes formed between the 10-MDP variants and tetragonal zirconia were evaluated.

RESULTS

The acquired data indicated that solvent is necessary for the formation of Zr-O-P bonds between 10-MDP and Y-TZP. Solvents affected the chemical affinity of 10-MDP to Y-TZP; acetone facilitated the best bonding, followed by ethanol. Changing the molecular structure of 10-MDP affected its chemical affinity to Y-TZP. The variants 15-MPDP, 12-MDDP, 6-hydroxyl-10-MDP and 6-carboxy-10-MDP all exhibited higher thermodynamic stability than 10-MDP when coordinated with tetragonal zirconia. In contrast, 2-MEP, 5-MPP, 10-hydroxyl-MDP, 10-carboxy-MDP, 5,6-dihydroxyl-10-MDP and 5,6-dicarboxy-10-MDP exhibited lower thermodynamic stability.

SIGNIFICANCE

10-MDP coordinates with zirconia through dissociating in solvents. Changing the molecular structure of 10-MDP theoretically affects its chemical affinity to Y-TZP.

摘要

目的

研究溶剂和改变 10-甲基丙烯酰氧代癸基二氢磷酸酯(10-MDP)的分子结构是否会影响其对钇稳定四方氧化锆多晶(Y-TZP)的化学亲和力。

方法

本研究使用 X 射线光电子能谱、傅里叶变换红外光谱和热力学计算,研究了 Y-TZP 与溶解在不同溶剂(丙酮/乙醇/水或混合物)中的 10-MDP 之间的化学亲和力。采用剪切结合强度(SBS)测试评估不同溶剂对 10-MDP 结合的影响。此外,通过改变 10-MDP 分子结构,合成了几种磷酸酯单体变体。变体包括延长/缩短间隔链长度,并在间隔链上的不同位置安装羟基或羧基作为侧链。评估了变体 10-MDP 与四方氧化锆形成的配合物的热力学参数。

结果

获得的数据表明,溶剂是 10-MDP 与 Y-TZP 之间形成 Zr-O-P 键所必需的。溶剂影响 10-MDP 对 Y-TZP 的化学亲和力;丙酮有利于最佳键合,其次是乙醇。改变 10-MDP 的分子结构会影响其对 Y-TZP 的化学亲和力。与四方氧化锆配位时,变体 15-MPDP、12-MDDP、6-羟基-10-MDP 和 6-羧基-10-MDP 的热力学稳定性均高于 10-MDP。相比之下,2-MEP、5-MPP、10-羟基-MDP、10-羧基-MDP、5,6-二羟基-10-MDP 和 5,6-二羧基-10-MDP 的热力学稳定性较低。

意义

10-MDP 在溶剂中解离与氧化锆配位。理论上,改变 10-MDP 的分子结构会影响其对 Y-TZP 的化学亲和力。

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