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四羟甲基氯化鏻在聚丙烯酰胺凝胶剂量计中的作用和反应的初步研究。

Preliminary studies on the role and reactions of tetrakis(hydroxymethyl)phosphonium chloride in polyacrylamide gel dosimeters.

机构信息

Centre d'imagerie moléculaire de Sherbrooke, Département de médecine nucléaire et radiobiologie, Université de Sherbrooke, Sherbrooke, QC, Canada.

出版信息

Phys Med Biol. 2012 Oct 7;57(19):5981-94. doi: 10.1088/0031-9155/57/19/5981. Epub 2012 Sep 11.

Abstract

A major source of dosimetric inaccuracy in normoxic polymer gel dosimeters is local variations in the concentration of oxygen scavenger. Currently, a phosphorus compound, tetrakis(hydroxymethyl)phosphonium chloride (THPC), is the oxygen scavenger of choice in most polymer gel dosimetry studies. Reactions of THPC in a gel dosimeter are not limited to oxygen. It can possibly be consumed in reacting with gelling agent, water free-radicals and polymer radicals before, during and after irradiation, hence affecting the dose response of the dosimeter in several ways. These reactions are not fully known or understood. It is our hypothesis that THPC not only scavenges radical species but also modifies the morphology of the gelatin network and of the polymer, possibly by intervening in the polymerization of monomers. These hypotheses are investigated in an anoxic acrylamide-based gel dosimeter. Scanning electron microscopy results indicate gelatin pores decreasing from 70 to 40 µm and a very different radiation-induced polymer structure in samples containing THPC; Fourier-transform Raman spectroscopy shows a two-fold reduction in the dose constants of monomer consumption; however, a significant change in the relative dose constants of monomer consumption as a function of dose could not be detected.

摘要

在常氧聚合物凝胶剂量计中,氧清除剂浓度的局部变化是剂量测量不准确的一个主要原因。目前,大多数聚合物凝胶剂量计研究中,选择的氧清除剂是磷化合物四羟甲基氯化鏻(THPC)。在凝胶剂量计中,THPC 的反应不仅限于氧气。它可能在辐照前、辐照中和辐照后与凝胶剂、水自由基和聚合物自由基反应而被消耗,从而以多种方式影响剂量计的剂量响应。这些反应尚未完全了解。我们假设 THPC 不仅能清除自由基,还能改变明胶网络和聚合物的形态,可能通过干预单体聚合来实现。在缺氧丙烯酰胺基凝胶剂量计中对这些假设进行了研究。扫描电子显微镜结果表明,含 THPC 的样品中明胶孔从 70µm 减小到 40µm,且聚合物的辐射诱导结构非常不同;傅里叶变换拉曼光谱显示单体消耗的剂量常数降低了一倍;然而,作为剂量函数的单体消耗的相对剂量常数并没有明显变化。

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