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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Bright Green Frequency Upconversion in Catechin Based Yb3+/Er3+ Codoped LaVO4 Nanorods upon 980 nm Excitation
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Bright Green Frequency Upconversion in Catechin Based Yb3+/Er3+ Codoped LaVO4 Nanorods upon 980 nm Excitation

机译:CATECHIN基于YB3 + / ER3 + COPOPED LAVO4纳米棒的亮绿色频率上升率为980 nm励磁

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A series of Yb3+-Er3+ codoped LaVO4 phosphors using catechin as a chelating agent and phase director have been prepared by the low temperature hydrothermal synthesis technique. The sample exists in two different crystalline phases, i.e., monoclinic and tetragonal, depending on the concentration of dopants. Structural, optical, and thermal characterizations have been done by using X-ray diffraction, EDX, FE-SEM, UVvis diffuse reflectance, FTIR, and TGA analysis. Upconversion emission (UC) based imaging and drug delivery systems have been proposed to overcome some significant drawbacks of existing systems. Though fluorides are better hosts for UC, their harmful character has forced researchers to look at alternatives including oxides. The frequency upconversion emission (UC) study upon excitation at 980 nm has been performed in this particular host (m-LaVO4) which is not an ideal upconverting host. The sample emits bright green color upconversion emission, along with relatively weak emissions in the blue, red, and NIR regions. The nanorod shape of the developed samples has been confirmed by FE-SEM image analysis. The purity of the green color emission has been confirmed by CIE chromaticity diagram which supports its utility in the fabrication of green upconverters.
机译:通过低温水热合成技术制备了一系列使用儿茶素作为螯合剂和相位导向器的YB3 + -S3 +编排的Lavo4磷光体。取决于掺杂剂的浓度,样品存在于两种不同的结晶相,即单斜晶和四边形中。已经通过使用X射线衍射,EDX,Fe-SEM,UVVIS弥漫性反射,FTIR和TGA分析来完成结构,光学和热表征。已经提出了基于基于系统的成像和药物递送系统来克服现有系统的一些显着缺点。虽然氟化物是UC的更好的主机,但他们的有害性格已经强迫研究人员来看看包括氧化物的替代品。在该特定主机(M-LAVO4)中已经在980nm处进行激发的频率上变速(UC)研究,这不是理想的上变频器。样品发出明亮的绿色上转换发射,以及蓝色,红色和NIR区域的相对较弱的排放。通过FE-SEM图像分析证实了开发样品的纳米棒形状。 CIE色度图已通过CIE色度图证实了绿色发射的纯度,其支持其在绿色上变频器的制造中的效用。

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