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Roles of solvent, annealing and Bi3+ co-doping on the crystal structure and luminescence properties of YPO4:Eu3+ nanoparticles

机译:溶剂,退火和Bi3 +共掺杂对YPO4:Eu3 +纳米颗粒晶体结构和发光性能的影响

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摘要

YPO4:Eu3+ nanoparticles have been prepared in different solvents such as polyethylene glycol (PEG), PEG-diacid and water. These nanoparticles crystallize in a mixture of tetragonal and hexagonal phases. The ratio of tetragonal to hexagonal phases in PEG and PEG-diacid mediums is much lower than that in water. Interestingly, luminescence intensity upon excitation at 260 and 395 nm for the sample prepared in water is higher than that for the sample prepared in PEG or PEG-diacid. This is because of association of water molecules trapped inside the pores of the hexagonal phase and this induces a non-radiative rate. In order to study the effect of Bi3+ co-doping on the luminescence intensity, we have carried out detailed crystal structure evolutions in different solvents. However, the luminescence intensity decreases significantly upon Bi3+ co-doping because it enhances conversion of a mixture into the hexagonal phase. Upon heating at 900 degrees C, the luminescence intensity increases significantly because of the conversion of hexagonal to tetragonal phase. An increase in the lifetime value of Eu3+ as well as the red light enhancement has been observed in 900 degrees C heated samples by Bi co-doping.
机译:YPO4:Eu3 +纳米粒子已在不同的溶剂(例如聚乙二醇(PEG),PEG-二酸和水)中制备。这些纳米颗粒在四方和六方相的混合物中结晶。 PEG和PEG-二酸介质中的四方相与六方相之比远低于水相。有趣的是,水中制备的样品在260和395 nm激发时的发光强度高于PEG或PEG-二酸制备的样品。这是由于捕获在六方相的孔内部的水分子的缔合,并且这引起了非辐射速率。为了研究Bi3 +共掺杂对发光强度的影响,我们在不同溶剂中进行了详细的晶体结构演变。然而,在Bi 3+共掺杂时,发光强度显着降低,因为其增强了混合物向六方相的转化。在900℃下加热时,由于六方相向四方相的转化,发光强度显着增加。通过Bi共掺杂在900摄氏度加热的样品中观察到Eu3 +的寿命值增加以及红光增强。

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