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固体三氯生辐射降解后产生的自由基物种的光谱、动力学和剂量学特征。

Spectroscopic, kinetic and dosimetric features of the radical species produced after radiodegradation of solid triclosan.

作者信息

Ustündağ Ilknur Ozkirim, Korkmaz Mustafa

机构信息

Physics Engineering Department, Faculty of Engineering, Hacettepe University, Ankara, Turkey.

出版信息

Radiat Environ Biophys. 2009 Apr;48(2):159-67. doi: 10.1007/s00411-009-0210-7. Epub 2009 Feb 14.

Abstract

In the present work, spectroscopic, kinetic and dosimetric features of the radicalic intermediates produced after gamma irradiation at room temperature of solid triclosan (2,4,4-trichloro-2-hydroxydiphenyl ether; TCS) were investigated by means of electron spin resonance spectroscopy (ESR) at various temperatures. The same material was also irradiated with UV light, and an ESR spectrum very similar to that obtained for gamma-irradiated TCS, was recorded. The ESR spectrum of TCS is characterized by an unresolved doublet with resonance lines split into other doublets. An evaluation technique based on variations of four assigned peak-to-peak amplitudes and signal intensity was adopted, to monitor the evolution of the spectrum under different experimental conditions. Radicals of one type were proposed to be created upon irradiation exhibiting decays via intra-track and inter-track recombination reactions with activation energies of 43 +/- 2 and 139 +/- 6 kJ/mol, respectively. A radical exhibiting axial g anisotropy and interacting with two un-equivalent protons was found to describe the experimental spectrum well. The sensitivity of TCS to gamma radiation was high (G = 0.12) suggesting TCS to be a suitable dosimetric material in measuring normal and accidental radiation doses in the range of (1-25 kGy).

摘要

在本研究中,通过在不同温度下利用电子自旋共振光谱(ESR)研究了室温下γ辐照固体三氯生(2,4,4 - 三氯 - 2 - 羟基二苯醚;TCS)后产生的自由基中间体的光谱、动力学和剂量学特征。同样的材料也用紫外光进行了辐照,并记录到了一个与γ辐照TCS所得光谱非常相似的ESR光谱。TCS的ESR光谱的特征是一个未分辨的双峰,其共振线分裂成其他双峰。采用了一种基于四个指定峰 - 峰幅度和信号强度变化的评估技术,以监测在不同实验条件下光谱的演变。有人提出,辐照时会产生一种类型的自由基,它们通过径迹内和径迹间的复合反应衰减,活化能分别为43±2和139±6 kJ/mol。发现一种表现出轴向g各向异性并与两个不等价质子相互作用的自由基能很好地描述实验光谱。TCS对γ辐射的灵敏度很高(G = 0.12),这表明TCS是测量(1 - 25 kGy)范围内正常和意外辐射剂量的合适剂量学材料。

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