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Iron Oxide-Induced Thermal Effects on Solid-State Upconversion Emissions in NaYF4:Yb,Er Nanocrystals

机译:氧化铁诱导的热效应对NaYF4:Yb,Er纳米晶体中固态上转换发射的影响

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Multifunctional materials exhibiting photon j upconversion show promising applications for biological imaging and sensing. In this study, we examine the solid-state upconversion emission of NaYE4:Yb,Er nanoparticles in the presence of iron oxide nanoparticles. Fe3O4 nanoparticles (6 nm) were mixed with NaYF4:Yb,Er nanoparticles (either 10 or 50 nm) in varying proportions by drying chloroform solutions of nanoparticles onto glass slides. Upconversion spectra were acquired, and a laser power-dependent emission was observed and correlated with the iron oxide content in the mixture. Changes in the lattice temperature of the upconverting particles were monitored by careful observation of the relative intensities of the ~2H_(11/2) and ~4S_(3/2)→ ~4I_(15/2) transitions. The emission characteristics observed are consistent with an iron oxide-induced thermal effect that is dependent on both the laser power and the proportion of iron oxide. The results highlight that the thermal effects of mixed nanoparticle systems should be considered in the design of luminescent upconverting hybrid materials.
机译:展现光子j上转换的多功能材料在生物成像和传感方面显示出有希望的应用。在这项研究中,我们研究了在氧化铁纳米粒子存在下NaYE4:Yb,Er纳米粒子的固态上转换发射。通过将纳米颗粒的氯仿溶液干燥到载玻片上,将Fe3O4纳米颗粒(6 nm)与NaYF4:Yb,Er纳米颗粒(10或50 nm)以不同比例混合。获得上转换光谱,并且观察到激光功率依赖性发射并且与混合物中的氧化铁含量相关。通过仔细观察〜2H_(11/2)和〜4S_(3/2)→〜4I_(15/2)跃迁的相对强度,可以监控上转换粒子的晶格温度变化。观察到的发射特性与氧化铁诱导的热效应一致,该效应取决于激光功率和氧化铁的比例。结果表明,在设计发光上转换杂化材料时应考虑混合纳米粒子系统的热效应。

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