Positron lifetimes in polyethylene glycol (PEG) polymer have been measured as a function of polymerization degree N (N = 25 - 500). It is observed that all the positron parameters are strongly dependent on N when N≤2...Positron lifetimes in polyethylene glycol (PEG) polymer have been measured as a function of polymerization degree N (N = 25 - 500). It is observed that all the positron parameters are strongly dependent on N when N≤250, and then tend to constant levels when N≥250. The variations of the longest-lived component (I3,τ3) show that the size of free- volume holes has a minimum at N - 100 and the hole concentration decreases with N. These trends may be due to the variations in crystallinity, the chain ends, entanglements and the Van der Waals interaction between segments. The variations of the second component (I2,τ2) with N reflect the changes of defect properties in crystalline regions of PEG.展开更多
Positron annihilation lifetime(PAL) spectroscopy is a powerful experimental methodfor electronic structure and defect study of solid and has been extensively applied in solidstate physics, chemistry,materials science,...Positron annihilation lifetime(PAL) spectroscopy is a powerful experimental methodfor electronic structure and defect study of solid and has been extensively applied in solidstate physics, chemistry,materials science, etc.展开更多
基金The Project Supported by National Natural Science Foundation of China
文摘Positron lifetimes in polyethylene glycol (PEG) polymer have been measured as a function of polymerization degree N (N = 25 - 500). It is observed that all the positron parameters are strongly dependent on N when N≤250, and then tend to constant levels when N≥250. The variations of the longest-lived component (I3,τ3) show that the size of free- volume holes has a minimum at N - 100 and the hole concentration decreases with N. These trends may be due to the variations in crystallinity, the chain ends, entanglements and the Van der Waals interaction between segments. The variations of the second component (I2,τ2) with N reflect the changes of defect properties in crystalline regions of PEG.
基金Project supported by the National Natural Science Foundation of China.
文摘Positron annihilation lifetime(PAL) spectroscopy is a powerful experimental methodfor electronic structure and defect study of solid and has been extensively applied in solidstate physics, chemistry,materials science, etc.