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Monomers for Adhesive Polymers, 8(a) Crosslinking Polymerization of Selected N-Substituted bis(Acrylamide)s for Dental Filling Materials

机译:粘合剂聚合物用单体,用于牙科填充材料的选定N取代的双(丙烯酰胺)的8(a)交联聚合

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The free-radical polymerization of bis-(N-ethylacrylamido)-ethylenglycol (I), N,N'-dimethyl-1,6-bis(acrylamido)-hexan (II), and N,N'-diethyl-1,3-bis(acrylamido)-propan (III) were investigated. The cross-linking polymerization was followed in bulk by using the ampoules technique and gravimetry. Polymerizations exhibited an abnormal kinetic behavior. For the monomer II, for example, the reaction order to 2,2'-azobisisobutyronitril (AIBN) initiator of 1.28, and the polymerization overall activation energy of 151 kJ/mol between 50 and 75 degrees C were determined. The increasing temperature and decreasing initiator concentration resulted in in increase of double bonds consumption in the formed polymer network. At 75 degrees C the residual unsaturation was under 2%, compared with 9.9% at 50 degrees C. The monomer conversion-time dependences were complemented also with differential scanning calorimetry (DSC) recording the heat released during polymerization. The extension of peak time with decreasing the instant heat flow rate at this point sort the studied bis(acrylamide)s according the reactivity in the following sequence: monomer III > I > II. The polymer samples sol-gel analyses in ethanol allowed the determination of the molecular weight M-c between the network crosslinks. The presence of microgel particles at the very beginning of polymerization and the changes in chain conformation with temperature we consider as the way in which was affected the polymerization kinetics of these monomers.
机译:双-(N-乙基丙烯酰胺基)-乙二醇(I),N,N'-二甲基-1,6-双(丙烯酰胺基)-己烯(II)和N,N'-二乙基-1的自由基聚合,研究了3-双(丙烯酰胺基)-丙烷(III)。通过使用安瓿技术和重量分析法大量进行交联聚合。聚合表现出异常的动力学行为。对于单体II,例如,确定在2,2'-偶氮二异丁腈(AIBN)引发剂的反应顺序为1.28,在50至75℃之间的聚合总活化能为151kJ / mol。温度升高和引发剂浓度降低导致所形成的聚合物网络中双键消耗增加。在75摄氏度时,残余不饱和度低于2%,而在50摄氏度时为9.9%。还通过记录聚合过程中释放的热量的差示扫描量热法(DSC)补充了单体转化时间的依赖性。此时,峰值时间的延长随着瞬时热流率的降低而降低,根据反应性按以下顺序对所研究的双(丙烯酰胺)进行排序:单体III> I> II。在乙醇中对聚合物样品进行溶胶-凝胶分析,可以确定网络交联之间的分子量M-c。聚合开始时微凝胶颗粒的存在以及链构象随温度的变化,我们认为是影响这些单体聚合动力学的方式。

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