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Heavy metallic oxide nanoparticles for enhanced sensitivity in semiconducting polymer x-ray detectors

机译:重金属氧化物纳米粒子可增强半导体X射线探测器的灵敏度

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Semiconducting polymers have previously been used as the transduction material in x-ray dosimeters, but these devices have a rather low detection sensitivity because of the low x-ray attenuation efficiency of the organic active layer. Here, we demonstrate a way to overcome this limitation through the introduction of high density nanoparticles having a high atomic number (Z) to increase the x-ray attenuation. Specifically, bismuth oxide (Bi _2O _3) nanoparticles (Z=83 for Bi) are added to a poly(triarylamine) (PTAA) semiconducting polymer in the active layer of an x-ray detector. Scanning electron microscopy (SEM) reveals that the Bi _2O _3 nanoparticles are reasonably distributed in the PTAA active layer. The reverse bias dc currentvoltage characteristics for PTAABi _2O _3 diodes (with indium tin oxide (ITO) and Al contacts) have similar leakage currents to ITO/PTAA/Al diodes. Upon irradiation with 17.5keV x-ray beams, a PTAA device containing 60wt% Bi _2O _3 nanoparticles demonstrates a sensitivity increase of approximately 2.5 times compared to the plain PTAA sensor. These results indicate that the addition of high-Z nanoparticles improves the performance of the dosimeters by increasing the x-ray stopping power of the active volume of the diode. Because the Bi _2O _3 has a high density, it can be used very efficiently, achieving a high weight fraction with a low volume fraction of nanoparticles. The mechanical flexibility of the polymer is not sacrificed when the inorganic nanoparticles are incorporated.
机译:半导体聚合物先前已用作X射线剂量计中的转导材料,但是由于有机活性层的X射线衰减效率低,这些设备具有相当低的检测灵敏度。在这里,我们展示了一种通过引入具有高原子序数(Z)的高密度纳米粒子来增加X射线衰减的方法来克服这一局限性。具体而言,将氧化铋(Bi _2O _3)纳米粒子(Bi的Z = 83)添加到X射线检测器活性层中的聚三芳基胺(PTAA)半导体聚合物中。扫描电子显微镜(SEM)表明,Bi _2O _3纳米粒子合理分布在PTAA活性层中。 PTAABi _2O _3二极管(带有氧化铟锡(ITO)和Al触点)的反向偏置直流电流电压特性具有与ITO / PTAA / Al二极管相似的泄漏电流。在用17.5keV X射线束照射时,与普通PTAA传感器相比,包含60wt%Bi _2O _3纳米粒子的PTAA装置显示出大约2.5倍的灵敏度提高。这些结果表明,高Z纳米粒子的添加通过增加二极管有效体积的X射线阻止能力来提高剂量计的性能。由于Bi _2O _3具有高密度,因此可以非常有效地使用它,从而以较低的纳米粒子体积分数实现了高重量分数。当掺入无机纳米粒子时,不会牺牲聚合物的机械柔韧性。

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