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Reaction mechanism of hydroxymaleimide induced by γ-irradiation in alcohol solvents

机译:醇溶剂中γ射线诱导的羟基马来酰亚胺反应机理

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Methanol and 2-propanol solutions of hydroxymaleimide were irradiated with γ-ray and mechanism of its γ-irradiation-induced reactions was investigated through final-product analyses using high performance liquid chromatography (HPLC) coupled with mass spectroscopy. An addition reaction of a solvent radical toward hydroxymaleimide was dominant among its oxygen-free γ-irradiation-induced reactions in its alcohol solutions while it is known that electron attachment toward hydroxyphtha-limide or hydroxysuccinimide is dominant among their γ-irradiation-induced reactions. The radical adduct abstracts hydrogen from solvent molecule to re-produce a solvent radical. Therefore, the degradation efficiency of hydroxymaleimide was more than ten times larger than that of hydroxyphthalimide and hydroxysuccinimide. Dimer was also produced through electron attachment process in the solutions of hydroxymaleimide. In addition, it was found that the degradation efficiency increased with decrease in dose rate. An additional reaction of a solvent radical toward hydroxymaleimide competes with a radical-radical recombination. The latter was reduced, with the former leading to efficient degradation of hydroxymaleimide increased by irradiation at lower dose rate. On the contrary, the production yield of the adduct radical as well as the degradation efficiency of hydroxymaleimide was inhibited in the presence of oxygen.
机译:用γ射线辐照羟基马来酰亚胺的甲醇和2-丙醇溶液,并通过高效液相色谱(HPLC)和质谱联用对最终产物进行分析,研究了其γ辐照诱发反应的机理。在醇溶液中,溶剂自由基向羟基马来酰亚胺的加成反应在其无氧的γ-辐射诱导的反应中占主导地位,而众所周知,在其γ-辐射诱导的反应中,对羟基邻苯二甲酰亚胺或羟基琥珀酰亚胺的电子附着占主导地位。自由基加合物从溶剂分子中提取氢以重新生成溶剂自由基。因此,羟基马来酰亚胺的降解效率是羟基邻苯二甲酰亚胺和羟基琥珀酰亚胺的降解效率的十倍以上。二聚体也通过电子附着过程在羟基马来酰亚胺溶液中产生。另外,发现降解效率随着剂量率的降低而增加。溶剂自由基对羟基马来酰亚胺的另外反应与自由基-自由基复合竞争。后者减少了,而前者导致了较低剂量率下的辐射使羟基马来酰亚胺的有效降解增加了。相反,在氧的存在下,加合物自由基的产率和羟基马来酰亚胺的降解效率受到抑制。

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