Jurga J, Woźniak-Braszak A, Fojud Z, Jurga K
Polymer Processing Division, Institute of Materials Technology, Poznan University of Technology, Piotrowo 3 St., 61-138 Poznań, Poland.
Solid State Nucl Magn Reson. 2004 Jan;25(1-3):47-52. doi: 10.1016/j.ssnmr.2003.03.014.
Spin-lattice NMR relaxation times T1 in the laboratory frame and T1rho(off) as well as T1rho(off) in the rotating frame off-resonance were employed to the study of molecular dynamics of both pristine PPS and thermally treated poly(p-phenylene sulfide) (PPS). The temperature dependence of T1 was exponential in the whole temperature range studied, whereas T1rho only in low temperatures. In the high temperature range the distribution of relaxation times T1rho and correlation times tau(c) as well as activation energy Ea was observed. The distribution of activation energy determined from T1 minima at 15 and 30 MHz and from low temperature slopes of T1rho dependence as well as from spectral density functions (estimated from proton off-resonance technique) was attributed to the reorientation of phenylene groups around the sulfur-phenyl-sulfur axis in amorphous and crystalline phases of PPS. Furthermore, it is suggested that an additional relaxation mechanism related to interactions of protons with paramagnetic centers is operative in a low temperature range. After thermal treatment of PPS the low temperature minima disappeared and the relaxation times shortened in the low temperature regime. Both these facts were attributed to an increased contribution of spin diffusion in the relaxation process.
利用实验室坐标系中的自旋晶格核磁共振弛豫时间T1、旋转坐标系中非共振时的T1ρ(off)以及T1ρ来研究原始聚苯硫醚(PPS)和热处理后的聚对苯硫醚(PPS)的分子动力学。在所研究的整个温度范围内,T1的温度依赖性呈指数关系,而T1ρ仅在低温下如此。在高温范围内,观察到了弛豫时间T1ρ和相关时间τ(c)的分布以及活化能Ea。由15和30 MHz下的T1最小值、T1ρ依赖性的低温斜率以及光谱密度函数(由质子非共振技术估算)确定的活化能分布归因于PPS非晶相和晶相中苯撑基团围绕硫-苯基-硫轴的重取向。此外,有人认为在低温范围内存在一种与质子和顺磁中心相互作用相关的额外弛豫机制。对PPS进行热处理后,低温最小值消失,低温区的弛豫时间缩短。这两个事实都归因于弛豫过程中自旋扩散贡献的增加。