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Optimization of the Synthesis and Physical Characterizationof Praseodymium-Doped Type III KGd(PO3)4 Nanocrystals

机译:合成和物理表征的优化Pra掺杂的III型KGd(PO3)4纳米晶体的制备

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摘要

Scintillator materials are used as detectors in the ray imaging techniques for medical diagnosis. Because the ideal medical scintillator material does not exist, many efforts are being made to find new materials that satisfy a greater number of properties. Here, the synthesis conditions of Pr:KGd(PO3)4 nanocrystals by the modified Pechini method are optimized to obtain a single crystalline phase of those that form the polymorphism of KGd(PO3)4. The interest lies in the type III phase because less quenching by Pr3+ concentration is expected. By performing transmittance measurements and because of the wide transparency window of the type III KGd(PO3)4 host, the 3H4 → 5d1 absorption transition of Pr3+ has been observed in the vacuum ultraviolet spectral range. After creating electron–hole pairs in the host due to the excitation of the material by X-ray radiation, the bands corresponding to the 5d1 → 3H4, 3H5, 3H6 and 5d1 → 3F3, 3F4, 1G4 transitions of Pr3+ have been observed in the near-visible spectral range, being these 5d → 4f transitions interesting for scintillation applications. Therefore, the type III Pr:KGd(PO3)4 nanocrystals allow the conversionfrom high-energy radiation to visible or near-visible light.
机译:闪烁体材料在医学成像的射线成像技术中用作检测器。由于不存在理想的医用闪烁体材料,因此人们进行了许多努力来寻找满足更多性能的新材料。在这里,通过改良的Pechini方法优化Pr:KGd(PO3)4纳米晶体的合成条件,以获得形成KGd(PO3)4多态性的单晶相。感兴趣的是III型相,因为预期通过Pr 3 + 浓度的淬灭较少。通过执行透射率测量,并且由于III型KGd(PO3)4主体的透明窗口宽,已观察到Pr 3 + 3 H4→5d1吸收跃迁在真空紫外光谱范围内。由于材料通过X射线激发而在主体中形成电子-空穴对后,对应于5d1→ 3 H4, 3 H5,< sup> 3 H6和5d1→ 3 F3, 3 F4, 1 G4过渡Pr 3 + ,这是闪烁应用感兴趣的5d→4f跃迁。因此,III型Pr:KGd(PO 3 4 纳米晶体可以进行转化从高能辐射到可见光或近可见光。

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