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YAG: Ce nanoparticle lightsources

机译:YAG:铈纳米粒子光源

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摘要

We investigate the luminescence properties of 10 nm yttrium aluminum garnet (YAG) nanoparticles doped with Ce ions at 0.2%, 4% and 13% that are designed as active probes for scanning near-field optical microscopy. They are produced by a physical method without any subsequent treatment, which is imposed by the desired application. The structural analysis reveals the amorphous nature of the particles, which we relate to some compositional defects as indicated by the elemental analysis. The optimum emission is obtained with a doping level of 4%. The emission of the YAG nanoparticles doped at 0.2% is strongly perturbed by the crystalline disorder whereas the 13% doped particles hardly exhibit any luminescence. In the latter case, the presence of Ce~(4+) ions is confirmed, indicating that the Ce concentration is too high to be incorporated efficiently in YAG nanoparticles in the trivalent state. By a unique procedure combining cathodoluminescence and Rutherford backscattering spectrometry, we demonstrate that the enhancement of the particle luminescence yield is not proportional to the doping concentration, the emission enhancement being larger than the Ce concentration increase. Time-resolved photoluminescence reveals the presence of quenching centres likely related to the crystalline disorder as well as the presence of two distinct Ce ion populations. Eventually, nano-cathodoluminescence indicates that the emission and therefore the distribution of the doping Ce ions and of the defects are homogeneous.
机译:我们研究了掺杂有0.2%,4%和13%Ce离子的10 nm钇铝石榴石(YAG)纳米粒子的发光特性,这些纳米粒子被设计为用于扫描近场光学显微镜的活性探针。它们是通过物理方法生产的,没有任何后续处理,这是由所需的应用施加的。结构分析揭示了颗粒的无定形性质,这与元素分析表明的某些成分缺陷有关。掺杂水平为4%时可获得最佳发射。掺杂有0.2%的YAG纳米粒子的发射受到晶体紊乱的强烈干扰,而掺杂13%的YAG纳米粒子几乎没有任何发光。在后一种情况下,证实存在Ce〜(4+)离子,这表明Ce浓度太高而无法有效地掺入三价状态的YAG纳米粒子中。通过结合阴极发光和卢瑟福背散射光谱的独特方法,我们证明了颗粒发光产率的提高与掺杂浓度不成比例,发射增强大于Ce浓度增加。时间分辨的光致发光揭示了猝灭中心的存在,该猝灭中心可能与晶体紊乱有关,并且存在两个不同的Ce离子种群。最终,纳米阴极发光表明发射以及因此掺杂的Ce离子和缺陷的分布是均匀的。

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