Al, Ga和In掺杂在柠檬酸盐辅助水热技术生长的ZnO纳米棒阵列上的协同效应,用于高效快速闪烁体屏幕。

IF 4.5 0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Murat Kurudirek, Sinem V Kurudirek, Anna Erickson, Nolan Hertel, Benjamin J Lawrie, Yauhen Tratsiak, Benjamin Klein, Charles L Melcher, Christopher J Summers, Paul J Sellin
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引用次数: 0

摘要

为了在核安全、核不扩散和高能物理领域作为高效的α粒子闪烁体,闪烁屏必须具有高光输出和快速衰减的特性。虽然在闪烁效率方面已经取得了很大的进步,但实现快速衰减时间特性仍然是一个挑战。本文研究了掺杂Al、Ga和In的垂直排列致密堆积ZnO纳米棒(NRs)的近带边(NBE)紫外发光和α粒子诱导闪烁特性。所有ZnO核磁共振材料均具有高晶六方纤锌矿结构,具有通过c轴平面(002)的强取向,长径比在13 ~ 22之间。电子顺磁共振(EPR)分析显示,所有ZnO核磁共振的顺磁信号均为g≈1.96。采用一种经济高效的绿色水热合成技术,生长出排列良好的纳米核糖核酸。在晶体生长过程中,在溶液中加入柠檬酸盐作为强还原剂,明显抑制了表面缺陷,从而增强了NBE紫外发射。在阴极发光(CL)显微镜下观察到ZnO nmr的顶表面有明显高的NBE紫外发射。结果表明,柠檬酸盐辅助给体掺杂ZnO NRs不仅可以减少缺陷发射和NBE自吸收,而且可以诱导快速衰减时间(~ 600 ~ 700 ps),这使得ZnO NRs成为用于相关粒子成像的快速α粒子闪烁体屏幕的良好候选者,用于在D-T和D-D中子发生器中产生的单个中子的时间和方向标记。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergistic effects of Al, Ga, and In doping on ZnO nanorod arrays grown via citrate-assisted hydrothermal technique for highly efficient and fast scintillator screens.

To be used as efficient alpha particle scintillator in the fields of nuclear security, nuclear nonproliferation and high-energy physics, scintillator screens must have high light output and fast decay properties. While there has been a great deal of progress in scintillation efficiency, achieving fast decay time properties are still a challenge. In this work, the near band edge (NBE) UV luminescence and alpha particle induced scintillation properties of vertically aligned densely packed ZnO nanorods (NRs) doped with Al, Ga, and In have been thoroughly investigated. The high crystalline hexagonal wurtzite structure with a strong orientation through the c-axis plane (002) and aspect ratios in the range 13-22 have been observed for all ZnO NRs. Electron paramagnetic resonance (EPR) analysis exhibited paramagnetic signals at g ≈ 1.96 for all ZnO NRs. A cost effective green hydrothermal synthesis technique was employed to grow well-aligned NRs. Using citrate as an additive acting as a strong reducing agent in the solution during the crystal growth, defects on the surface are significantly suppressed, thereby enhancing the NBE UV emission. Significantly higher NBE UV emission was observed from the top surface of ZnO NRs in cathodoluminescence (CL) microscopy. Results show that citrate assisted donor doping of ZnO NRs not only reduces the defect emission and NBE self-absorption, but also induces fast decay time (~ 600-700 ps), which makes ZnO NRs a good candidate for fast alpha particle scintillator screens used in associated particle imaging for time and direction tagging of individual neutrons generated in D-T and D-D neutron generators.

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