Dewaele Magali, Truffier-Boutry Delphine, Devaux Jacques, Leloup Gaëtane
Ecole de Médecine Dentaire et de Stomatologie, Université catholique de Louvain, Bruxelles, Belgium.
Dent Mater. 2006 Apr;22(4):359-65. doi: 10.1016/j.dental.2005.03.014. Epub 2005 Sep 6.
Polymerization shrinkage and degree of conversion (DC) of resin composites are closely related manifestations of the same process. Ideal dental composite would show an optimal degree of conversion and minimal polymerization shrinkage. These seem to be antagonistic goals, as increased monomer conversion invariably leads to high polymerization shrinkage values.
This paper aims at accurately determining the polymerization volume contraction of experimental neat resins and to link it to the number of actual vinyl double bonds converted in single ones instead of, as generally done, to the degree of conversion.
Different mixtures of Bis-GMA/TEGDMA (traditionally used monomers) were analyzed. Contraction of the polymers was determined by pycnometry and the use of a density column. DC was determined by the use of Raman spectrometry.
An univocal relationship has been found between the volume contraction and the actual number of vinyl double bonds converted into single ones. A contraction value of 20.39 cm3/mole (of converted C=C) was deduced from 27 measurements.
This relationship helps in finding solutions to the polymerization shrinkage problem. A reduction of the polymerization shrinkage due to the chemical reaction may obviously be expected from the addition of molecules allowing a decrease in the number of double bonds converted per unit volume of resin matrix, while maintaining the degree of conversion (of Bis-GMA and TEGDMA) and thus the mechanical properties. Further research will be directed at this objective.
树脂复合材料的聚合收缩和转化率(DC)是同一过程密切相关的表现形式。理想的牙科复合材料应呈现最佳转化率和最小聚合收缩。这些似乎是相互矛盾的目标,因为单体转化率的提高总是导致高聚合收缩值。
本文旨在准确测定实验性纯树脂的聚合体积收缩,并将其与单个实际转化的乙烯基双键数量联系起来,而不是像通常那样与转化率联系起来。
分析了双酚A-甲基丙烯酸缩水甘油酯/三乙二醇二甲基丙烯酸酯(传统使用的单体)的不同混合物。聚合物的收缩通过比重瓶法和密度柱的使用来测定。转化率通过拉曼光谱法测定。
已发现体积收缩与实际转化为单键的乙烯基双键数量之间存在明确的关系。从27次测量中推导出收缩值为20.39 cm³/摩尔(转化的C = C)。
这种关系有助于找到聚合收缩问题的解决方案。显然,可以预期通过添加能够减少每单位体积树脂基质中转化的双键数量的分子来降低由于化学反应引起的聚合收缩,同时保持(双酚A-甲基丙烯酸缩水甘油酯和三乙二醇二甲基丙烯酸酯的)转化率,从而保持机械性能。进一步的研究将朝着这个目标进行。