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Examination of the long-lived, oxygen-induced radicals in irradiated ultra-high molecular weight polyethylene

机译:辐照超高分子量聚乙烯中长寿命氧诱导的自由基的检测

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Electron spin resonance (ESR) measurements were conducted to determine the thermal stability and structure of the long-lived, oxygen-induced radicals in irradiated ultra-high molecular weight polyethylene (UHMWPE). Employing a microwave saturation technique in conjunction with low-temperature (—133 °C) ESR, it was revealed that two most likely radicals, polyenyl (Rl) and oxygen-centred di-or tri-enyl (R2) radicals, constitute the so-called oxygen-induced radicals (OIR). The reported single line due to OIR has in fact two resonance structures, one can be detected as an isolated signal (due to polyenyl, Rl) at low microwave power (near 0.01 mW) and the other (oxygen-centred di- or tri-enyl) is prominent at high microwave power (>10 mW). The g-values of the radicals Rl and R2 were found to be 2.0044 and 2.0056, respectively. While Rl is a well-defined singlet with ΔH_(pp) = 5.5 G, R2 has weak hyperfine lines (6) with proton coupling constant α_H = 4.8 G. Annealing tests near 130 ℃ and 140 ℃ further suggest that Rl resides in crystalline regions, and R2 near crystalline surface with a dangling bond or in the voids or imperfections within the crystalline regions favouring oxygen attachment.
机译:进行电子自旋共振(ESR)测量,以确定经辐射的超高分子量聚乙烯(UHMWPE)中长寿命,氧诱导的自由基的热稳定性和结构。结合微波饱和技术和低温(-133°C)ESR,发现两个最可能的自由基是多烯基(R1)和以氧为中心的二或三烯基(R2)自由基。所谓的氧诱导自由基(OIR)。据报道,由于OIR而产生的单线实际上具有两个谐振结构,一个可以在低微波功率(接近0.01 mW)下检测为隔离信号(由于多烯基,R1),而另一个可以检测为氧中心二或三在高微波功率(> 10 mW)时很突出。发现基团R1和R2的g值分别为2.0044和2.0056。尽管R1是ΔH_(pp)= 5.5 G的明确单线态,但R2具有弱的超细线(6),质子耦合常数α_H= 4.8G。130℃和140℃附近的退火测试进一步表明R1驻留在晶体区域和R2在具有悬空键的晶体表面附近或在晶体区域内的空隙或缺陷中有利于氧的附着。

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