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Study of new practical ESR dosimeter based on carbonated hydroxyapatite and its dosimetric properties

机译:基于碳酸羟基磷灰石的新型实用ESR剂量计及其剂量特性研究

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摘要

The development of new dosimeters with good dosimetric properties is important for quality control in radiation applications. A new practical electron spin resonance (ESR) dosimeter based on carbonated hydroxyapatite that simulated the composition and structure of tooth enamel was specially synthesized. The synthesized material was investigated by transmission electron microscope, X-ray diffraction, fourier transform infrared spectroscopy and X-ray photo electron spectroscopy to confirm to the main composition of carbonated hydroxyapatite with CO32- successfully doped into the crystal lattice through optimizing the synthesis process of C/P molar ratio, pH value dynamical adjustment, annealing temperature and time. The dosimetric properties were systematically investigated by ESR spectroscopy. The results indicated that the radiation induced signal had a good dose response within a relatively wide dose range. The dose response was linear in the dose range of 0–400 Gy with a correlation coefficient of 0.9999 and had dose accumulative effect in the experimental dose range of 0–100 Gy. In a wider dose range up to 30 kGy, the dose response also presented linear feature in double-logarithmic coordinate system with a correlation coefficient of 0.9970. The dose detection limit was about 0.34Gy with a given probability of 95% confidence level depending upon a rigid calculation algorithm. The signal was extremely stable in the observation time of 360 days with a variation coefficient of 3.8%. The radiation sensitivity of the material showed no remarkable variation against photon energy from 662 KeV to 1.25 MeV and dose rate from 0.86 Gy/min to 12.17 Gy/min. The material showed more sensitive in lower photon energy range below 662 keV, which hint additional calibration may need when using in special photon energy condition. The preliminary results suggested that this newly developed dosimeter was potential to become a practical dosimeter that would expand the application fields of ESR dosimetry.
机译:具有良好剂量特性的新型剂量计的开发对于辐射应用中的质量控制非常重要。专门合成了一种基于碳酸羟基磷灰石的新型实用电子自旋共振剂量计,该剂量计模拟了牙釉质的组成和结构。通过透射电子显微镜,X射线衍射,傅立叶变换红外光谱和X射线光电子光谱对合成的材料进行了研究,以确认成功地将CO3 2-掺杂到碳酸盐中的羟基磷灰石的主要成分。通过优化C / P摩尔比,pH值动态调节,退火温度和时间的合成过程来优化晶格。通过ESR光谱系统地研究了剂量学性质。结果表明,辐射诱导的信号在相对宽的剂量范围内具有良好的剂量响应。剂量响应在0–400 Gy的剂量范围内呈线性,相关系数为0.9999,并且在0–100 Gy的实验剂量范围内具有剂量累积效应。在高达30 kGy的更宽剂量范围内,剂量响应在双对数坐标系中也呈现线性特征,相关系数为0.9970。取决于刚性计算算法,剂量检测极限约为0.34Gy,置信度为95%的给定概率。该信号在360天的观察时间内极为稳定,变异系数为3.8%。该材料的辐射敏感性显示出从662 KeV到1.25 MeV的光子能量和0.86 Gy / min到12.17 Gy / min的剂量率无明显变化。该材料在低于662 keV的较低光子能量范围内显示出更高的灵敏度,这暗示了在特殊的光子能量条件下使用时可能需要进行额外的校准。初步结果表明,这种新开发的剂量计有可能成为实用的剂量计,从而扩大ESR剂量法的应用领域。

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