'/> <![CDATA[Versatile core–shell SiO<ce:inf loc='post'>2</ce:inf>@SrTiO<ce:inf loc='post'>3</ce:inf>:Eu<ce:sup loc='post'>3+</ce:sup>, Li<ce:sup loc='post'>+</ce:sup> nanopowders as fluorescent label for the visualization of latent fingerprints and anti-counterfeiting applications]]>
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2@SrTiO3:Eu3+, Li+ nanopowders as fluorescent label for the visualization of latent fingerprints and anti-counterfeiting applications]]>

机译:<![cdata [多功能核心 - shell sio 2 @srtio 3 :eu 3 + ,li + 纳米孔作为荧光标签,用于可视化潜在指纹和防伪应用 ]]>

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Graphical abstract Display Omitted Highlights ? Core–shell SiO2@SrTiO3:Eu3+:Li+ nanopowders were prepared by easy way. ? Increased coating of shell tuned the emission from orange-red to the deep red. ? The PL intensity was increased two folds in coated phosphors than non-coated. ? Samples were efficient to use in Forensic and anti-counterfeiting applications. Abstract To overcome the shortcomings encountered in enhancing the quality of latent finger prints (LFPs) by traditional powder dusting method, SiO2@SrTiO3:Eu3+ (1mol%), Li (1wt%) core–shell nanopowders (NPs) were prepared by using combustion process. LFPs were visualized by staining prepared samples on both porous and non-porous surfaces and were observed under the illumination of UV light of wavelength 254nm. These LFPs reveals the detailed characteristic features such as lake, hook, island, bifurcation with high sensitivity, better selectivity and without background hindrance. SiO2@SrTiO3:EuLi NPs exhibited characteristic pure red emission peaks in the range of 530–760nm which can be assigned to 5D0 7FJ (J?=?0, 1, 2 and 3) transitions. By altering the number of coating cycles indistinct white light fluorescent to warm white emitting phosphors could be obtained with the single and same crystal phase. The spectral intensity parameters and Eu-O ligand behaviors were estimated by means of Judd-Ofelt (J-O) theory. The prepared core–shell SiO2@SrTiO3:Eu3+, Li NPs are explored as a fluorescent labeling agent for
机译:<![cdata [ 图形摘要 显示省略 亮点 core-shell sio 2 @srtio 3 :eu 3 + :li + 纳米粉末通过简单的方式制备。 增加涂层Shell调整从橙色红色到深红色的排放。 PL强度增加了涂覆磷光体的两倍,而不是非涂层。 样本在法医和防伪应用中使用。 抽象 以克服提高LA质量遇到的缺点Tent Finger Prints(LFP)通过传统的粉末粉尘方法,SIO 2 @SRTIO 3 :欧盟 3 + (1 mol%),li(1 通过使用燃烧方法制备Wt%)核 - 壳纳米粉粉粉粉粉(NPS)。通过在多孔和无孔表面上染色制备的样品来可视化LFP,并且在波长254的UV光的照明下观察到的波长254:HSP SP =“0.25”/> NM的照明。这些LFP揭示了湖泊,钩,岛,具有高灵敏度,更好的选择性,无需背景妨碍的特征特征,如湖泊,钩,岛,分叉。 SIO 2 @SRTIO 3 :EULI NPS在范围内显示特征纯红色发射峰值530-760 nm,可以分配给 5 d 0 < / ce:inf> 7 f J J ?=?0,1,2和3)转换。通过改变涂布循环的数量,可以通过单一和相同的结晶相获得涂布白光荧光至温暖的白色发光磷光体。通过Judd-ofelt(J-O)理论估计光谱强度参数和EU-O配体行为。制备的核心壳SIO 2 @SRTIO 3 :EU 3 + ,Li NPS被探索为荧光标记剂

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