首页> 外文期刊>Zeitschrift fur Anorganische und Allgemeine Chemie >Synthesis and Upconversion Luminescence in LaF3:Yb3+, Ho3+, GdF3: Yb3+, Tm3+ and YF3:Yb3+, Er3+ obtained from Sulfide Precursors
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Synthesis and Upconversion Luminescence in LaF3:Yb3+, Ho3+, GdF3: Yb3+, Tm3+ and YF3:Yb3+, Er3+ obtained from Sulfide Precursors

机译:LaF3中的合成和上转换发光:Yb3 +,HO3 +,GDF3:YB3 +,TM3 +和YF3:YB3 +,ER3 +从硫化物前体获得

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摘要

Rare earth fluorides are mainly obtained from aqueous solutions of oxygen-containing precursors. Probably, this method is simple and efficient, however, oxygen may partially be retained in the fluoride structure. We offer an alternative method: obtaining fluorides and solid solutions based on them from an oxygen-free precursor. As starting materials, we choose sulfides of rare-earth elements and solid solutions based on them. The fluorination is carried out by exposure to hydrofluoric acid of various concentrations. The transmission electron microscopy images revealed the different morphologies of the products, which depend on the concentration of the fluorinating component (HF) and the host element. The solid solution particle size varied from 30-35 nm in the case of GdF3:Yb3+, Tm3+ (4 % HF) to larger structures with dimensions exceeding 200 nm, such as that for LaF3:Yb3+, Ho3+ (40 % HF). The thermal characteristics, such as the temperatures of the transitions and melting and enthalpies, were determined for the solid solutions and simple fluorides. Applicability of the materials obtained as biological luminescent markers was tested on the example of upconversion luminescence, and good upconversion properties were detected.
机译:稀土氟化物主要由含氧前体的水溶液获得。可能,该方法简单且有效,然而,氧气可以部分地保留在氟化物结构中。我们提供一种替代方法:从非无氧前体基于它们获得氟化物和固溶溶液。作为原料,我们选择基于它们的稀土元素和固溶体的硫化物。通过暴露于各种浓度的氢氟酸进行氟化。透射电子显微镜图像显示出产品的不同形态,这取决于氟化组分(HF)和宿主元素的浓度。在GDF3:YB3 +,TM3 +(4%HF)的情况下,固体溶液粒度在30-35nm中变化到尺寸超过200nm的较大结构,例如LaF3:Yb3 +,HO3 +(40%HF)。测定固体溶液和简单的氟化物,确定热特性,例如过渡和熔化和焓和焓的温度。在上转换发光的实施例中测试了作为生物发光标记得到的材料的适用性,检测到良好的上转化性质。

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