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Mixed fuel approach for the fabrication of TiO_2:Dy~(3+)(1-11 mol) nanophosphors: Applications towards wLED and latent finger print detection

机译:用于制备TiO_2的混合燃料方法:DY〜(3 +)(1-11mol%)纳米膦:朝向WLED和潜在的手指打印检测的应用

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The pure and Dy~(3+)(1-11 mol%) ions doped TiO_2 nanophosphors (NPs) were prepared by solution combustion method using grouping of fuels; glycine and ammonium acetate. PXRD studies establishes that the pure and doped samples show rutile and anatase phases respectively. The Raman spectra illustrates that the absorption peaks noticed at ~142, 446 and 609 cm~(-1) were due to the active vibrational optical phonon modes pertaining to B_(1g), E_g and A_(1g) respectively of the pure tetragonal rutile phase, whereas the peaks at ~395, 513 and 639 cm~(-1) were attributed due the active modes B_(1g), A_(1g) and E_g respectively of anatase phase of TiO_2. The active mode observed at ~142 cm~(-1) was a characteristic mode whereas the mode at ~229 cm~(-1) was attained due to second order effect [SOE] of pure rutile phase of TiO_2. The Raman studies validate the PXRD studies. The CIE and CCT outcomes show that NPs can be used for wLED and household applications. The optimized product TiO_2:Dy~(3+)(9 mol%) was utilized for the visualization of latent finger prints (LFPs). The results reveal that, all the levels (I to III) of ridge feature were clearly visualized under normal light indicating that the powder was a reliable and promising labeling agent for LFPs.
机译:使用燃料分组,通过溶液燃烧方法制备纯和Dy〜(3 +)(1-11mol%)离子掺杂TiO_2纳米膦(NPS);甘氨酸和醋酸铵。 PXRD研究确定纯净和掺杂样品分别显示金红石和锐钛矿相。拉曼光谱说明在〜142,446和609cm〜(-1)中注意到的吸收峰是由于纯四角金红石的与B_(1g),e_g和a_(1g)有关的有源振动光学声子模式阶段,而在〜395,513和639cm〜(-1)的峰是由于TiO_2的锐钛矿阶段的有源模式B_(1g),A_(1g)和e_g而归因。在〜142cm〜(-1)中观察到的活性模式是特征模式,而〜229cm〜(-1)的模式由于TiO_2的纯金红石阶段的二阶效应而达到〜229cm〜(-1)。拉曼研究验证了PXRD研究。 CIE和CCT结果表明,NPS可用于WLED和家庭应用。优化的产品TiO_2:DY〜(3 +)(9mol%)用于可视化潜在手指印刷(LFP)。结果表明,脊髓特征的所有水平(I至III)在正常光下清晰可视化,表明粉末是LFP的可靠和有前途的标记剂。

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