Sabater i Serra R, Escobar Ivirico J L, Meseguer Dueñas J M, Andrio Balado A, Gómez Ribelles J L, Salmerón Sánchez M
Center for Biomaterials, Universidad Politécnica de Valencia, 46022, Valencia, Spain.
Eur Phys J E Soft Matter. 2007 Apr;22(4):293-302. doi: 10.1140/epje/e2007-00036-7. Epub 2007 Apr 6.
The dielectric relaxation spectrum of polycaprolactone (PCL) networks hydrophilized with different amounts of 2-hydroxyethyl acrylate (HEA) is investigated. PCL is a semicrystalline polyester with a complex relaxation spectrum that includes the main alpha relaxation and two secondary modes (beta, gamma) at lower temperatures. The overlapping of the different relaxational modes was split by using several Havriliak-Negami functions. Crosslinking the material modifies the dynamics of the main relaxation process as reflected by the parameters that characterize the Vogel behavior of the process and the dynamic fragility. The incorporation of HEA units in the network results in a material with microphase separation: two alpha processes are detected, the one corresponding to the PCL chains and the new one associated to nanometric regions that contain different amount of both comonomers. The incorporation of the HEA units in the system involves the presence of a new beta(sw) relaxation due to the link of two side chains by water molecules through hydrogen bonding.
研究了用不同量的丙烯酸2-羟乙酯(HEA)亲水化的聚己内酯(PCL)网络的介电弛豫谱。PCL是一种半结晶聚酯,具有复杂的弛豫谱,包括主要的α弛豫以及在较低温度下的两种次级模式(β、γ)。通过使用几个哈夫里利亚克-内加米函数将不同弛豫模式的重叠分开。交联材料改变了主要弛豫过程的动力学,这由表征该过程的Vogel行为和动态脆性的参数反映出来。在网络中引入HEA单元会导致材料出现微相分离:检测到两个α过程,一个对应于PCL链,另一个与包含不同量两种共聚单体的纳米区域相关。在系统中引入HEA单元会由于水分子通过氢键连接两个侧链而出现新的β(sw)弛豫。