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An experimental design approach for hydrothermal synthesis of NaYF4: Yb3+, Tm3+ upconversion microcrystal: UV emission optimization

机译:水热合成NaYF4:Yb3 +,Tm3 +上转换微晶的实验设计方法:紫外发射优化

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摘要

Ultraviolet (UV) emissions of hydrothermally synthesized NaYF4: Yb3+, Tm3+ upconversion crystals were optimized using the response surface methodology experimental design. In these experimental designs, 9 runs, two factors namely (1) Tm3+ ion concentration, and (2) pH value were investigated using 3 different ligands. Introducing UV upconversion emissions as responses, their intensity were separately maximized. Analytical methods such as XRD, SEM, and FTIR could be used to study crystal structure, morphology, and fluorescent spectroscopy in order to obtain luminescence properties. From the photo-luminescence spectra, emissions centered at 347, 364, 452, 478, 648 and 803 nm were observed. Some results show that increasing each DOE factor up to an optimum value resulted in an increase in emission intensity, followed by reduction. To optimize UV emission, as a final result to the UV emission optimization, each design had a suggestion. (C) 2015 Elsevier B.V. All rights reserved.
机译:水热合成的NaYF4:Yb3 +,Tm3 +上转换晶体的紫外(UV)发射使用响应表面方法实验设计进行了优化。在这些实验设计中,进行了9次运行,使用三个不同的配体研究了两个因素,即(1)Tm3 +离子浓度和(2)pH值。引入UV上转换发射作为响应,其强度分别最大化。 XRD,SEM和FTIR等分析方法可用于研究晶体结构,形态和荧光光谱,以获得发光特性。从光致发光光谱,观察到集中在347、364、452、478、648和803nm处的发射。一些结果表明,将每个DOE因子增加到最佳值会导致发射强度的增加,然后降低。为了优化紫外线发射,作为紫外线发射优化的最终结果,每个设计都有一个建议。 (C)2015 Elsevier B.V.保留所有权利。

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