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首页> 外文期刊>Journal of Chemistry >Sonochemical Synthesis and Properties of YVO4:Eu3+ Nanocrystals for Luminescent Security Ink Applications
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Sonochemical Synthesis and Properties of YVO4:Eu3+ Nanocrystals for Luminescent Security Ink Applications

机译:YVO4的多种子胞化合成与性质:Eu3 +纳米晶体发光安全油墨应用

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摘要

Solutions and redispersible powders of nanocrystalline, europium-doped YVO4, are prepared via a wet chemical method using the ultrasonic processor (sonochemical) and microwave and thermal stirring. From X-ray diffraction (XRD) results, YVO4:Eu3+ nanoparticles synthesized using sonochemical method have better crystallinity than those prepared using thermal stirring and microwave methods exhibiting the tetragonal structure known for bulk material. From field-emission scanning electron microscopy (FE-SEM) and transmission electron microscopy (TEM) results, it is found that the size of nanoparticles is around 25?nm and increasing after annealing at 900°C. From UV-Vis result, there is a peak at 270?nm corresponding to the absorption of VO43? groups. The photoluminescence (PL) results clearly show the strongest red emission peak at the wavelength around 618?nm. The highest luminescent intensity is obtained for the sample prepared by the sonochemical method at pH?=?12 and annealing temperature at 900°C for 4?h. The average lifetimes of the Eu3+ ions in the samples annealed at 300, 600, and 900°C for 1?h at 618?nm emission under 275?nm excitation are 0.36, 0.62, and 0.64?ms, whereas sample annealed at 900°C for 4?h has lifetime of 0.70?ms. The security ink, containing synthesized YVO4:Eu3+ nanoparticles, is dispersed in glycerol and other necessary solvents. The experimental security labels are printed by inkjet using the electrohydrodynamic printing technique. The resulting lines represented to the security labels are analyzed by the 3D microscope equipment and UV 20?W mercury lamp with a wavelength of ~254?nm. The seamless line of the printed security label has the value of the width at ~230?μm, thickness at ~0.68?μm, and distance between two adjacent lines at 800?μm. This result is compatible for producing security labels in small size (millimeter) in order to increase security property.
机译:通过使用超声波处理器(SONOCHEMICAL)和微波和热搅拌,通过湿化学方法制备纳米晶铕掺杂YVO4的溶液和可再分子粉末。从X射线衍射(XRD)结果,YVO4:使用SOOPEMICAL方法合成的EU3 +纳米颗粒具有比使用热搅拌的热搅拌和微波方法制备的纳米颗粒,具有较为已知的散装材料的微波方法。从现场发射扫描电子显微镜(Fe-SEM)和透射电子显微镜(TEM)结果,发现纳米颗粒的尺寸约为25μm,在900℃下退火后增加。从UV-VIS结果中,270℃的峰值对应于VO43的吸收?团体。光致发光(PL)结果清楚地显示了波长在618Ω·Nm的波长处的最强的红色发射峰值。获得最高发光强度,用于在pH?=α12和900℃下以900℃的退火温度制备的样品。样品中的Eu3 +离子的平均寿命在300,600和900℃下在275℃的618℃下退火1·hΔnmα.NM激发为0.36,0.62和0.64Ω·ms,而样品在900°退火C对于4?H有0.70?MS的寿命。含有合成的YVO4:Eu3 +纳米颗粒的安全油墨分散在甘油和其他必需的溶剂中。使用电液动力学印刷技术喷墨印刷实验安全标签。由3D显微镜设备和UV 20分析给安全标签的所得线,波长为〜254Ω·瓦的汞灯。印刷安全标签的无缝线具有宽度〜230?μm的宽度,厚度为0.68≤μm,以及800Ωμm的两个相邻线之间的距离。此结果兼容,用于在小尺寸(毫米)中产生安全标签,以增加安全性。

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