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LiF:Mg,Cu,B 磷光体的合成、热释光、缺陷中心及剂量学特性

Synthesis, thermoluminescence, defect centers and dosimetric characteristics of LiF:Mg,Cu,B phosphor.

作者信息

Preto Prince David, Balraj Vidyavathy, Dhabekar Bhushan S, Watanabe S, Rao T K Gundu

机构信息

Solid State Chemistry Research Laboratory, Department of Chemistry, Velammal Engineering College, Surapet, Chennai 600066, India.

Solid State Chemistry Research Laboratory, Department of Chemistry, Velammal Engineering College, Surapet, Chennai 600066, India.

出版信息

Appl Radiat Isot. 2016 Dec;118:95-101. doi: 10.1016/j.apradiso.2016.08.015. Epub 2016 Aug 21.

Abstract

The present paper reports the thermoluminescence (TL), dosimetric characteristics and electron spin resonance (ESR) of LiF: Mg, Cu,B (MCB) phosphor synthesized by a solid state method. Its glow curve structure is similar to that of LiF: Mg, Cu,P (MCP) phosphor with the main dosimetric peak at 218°C. MCB is 12 times more sensitive than LiF: Mg, Ti and about 1.9 times less sensitive than MCP phosphor. A noteworthy feature is that the phosphor exhibits a linear dose response up to 100Gy with a minimum detectable dose of 17μGy. The TL emission spectrum was recorded and the post irradiation fading in MCB at ambient temperatures and humidity was negligible for a period of one month. Room temperature ESR spectrum of irradiated phosphor consists of at least two distinct centers. Center I with an isotropic g factor 2.0061 is attributable to an F-center and is the likely recombination center for the main TL peak at 220°C. Center II characterized by a g-factor 2.0090 and an unusual broad line (linewidth ~ 415G) is also identified as an F-center. A third defect center, observable during thermal annealing at high temperature, is assigned to another F-center.

摘要

本文报道了采用固态法合成的LiF:Mg,Cu,B(MCB)磷光体的热释光(TL)、剂量学特性和电子自旋共振(ESR)。其发光曲线结构与LiF:Mg,Cu,P(MCP)磷光体相似,主要剂量学峰位于218°C。MCB的灵敏度比LiF:Mg,Ti高12倍,比MCP磷光体低约1.9倍。一个值得注意的特点是,该磷光体在高达100Gy的剂量范围内呈现线性剂量响应,最小可探测剂量为17μGy。记录了TL发射光谱,在室温及湿度条件下,MCB在一个月内的辐照后褪色可忽略不计。辐照后磷光体的室温ESR光谱至少由两个不同的中心组成。各向同性g因子为2.0061的中心I归因于F中心,可能是220°C主要TL峰的复合中心。g因子为2.0090且具有异常宽线(线宽约415G)的中心II也被确定为F中心。在高温热退火过程中可观察到的第三个缺陷中心被归为另一个F中心。

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