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Real time radiation dosimeters based on vertically aligned multiwall carbon nanotubes and graphene

机译:基于垂直排列的多壁碳纳米管和石墨烯的实时辐射剂量计

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Measurements of the absorbed dose and quality assurance programs play an important role in radiotherapy. Ionization chambers (CIs) are considered the most important dosimeters for their high accuracy, practicality and reliability, allowing absolute dose measurements. However, they have a relative large physical size, which limits their spatial resolution, and require a high bias voltage to achieve an acceptable collection of charges, excluding their use for in vivo dosimetry. In this paper, we propose new real time radiation detectors with electrodes based on graphene or vertically aligned multiwall carbon nanotubes (MWCNTs). We have investigated their charge collection efficiency and compared their performance with electrodes made of a conventional material. Moreover, in order to highlight the effect of nanocarbons, reference radiation detectors were also tested. The proposed dosimeters display an excellent linear response to dose and collect more charge than reference ones at a standard bias voltage, permitting the construction of miniaturized CIs. Moreover, an MWCNT based CI gives the best charge collection efficiency and it enables working also to lower bias voltages and zero volts, allowing in vivo applications. Graphene based CIs show better performance with respect to reference dosimeters at a standard bias voltage. However, at decreasing bias voltage the charge collection efficiency becomes worse if compared to a reference detector, likely due to graphene's semiconducting behavior.
机译:吸收剂量的测量和质量保证程序在放射治疗中起着重要作用。电离室(CIs)被认为是最重要的剂量计,因为它们具有高精度,实用性和可靠性,可以进行绝对剂量测量。但是,它们具有相对较大的物理尺寸,这限制了它们的空间分辨率,并且需要高偏置电压才能实现可接受的电荷收集,但不能将其用于体内剂量测定。在本文中,我们提出了一种新的带有基于石墨烯或垂直排列的多壁碳纳米管(MWCNT)的电极的实时辐射探测器。我们研究了它们的电荷收集效率,并将其性能与常规材料制成的电极进行了比较。此外,为了突出纳米碳的作用,还对参考辐射探测器进行了测试。所提出的剂量计在标准偏置电压下显示出对剂量的出色线性响应,并且比参考剂量计收集更多的电荷,从而允许构建小型CI。此外,基于MWCNT的CI可以提供最佳的电荷收集效率,并且还可以降低偏压和零伏,从而可以在体内应用。相对于参考剂量计,基于石墨烯的CI在标准偏置电压下表现出更好的性能。但是,在偏置电压降低的情况下,与参考检测器相比,电荷收集效率会变差,这很可能是由于石墨烯的半导体行为所致。

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