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首页> 外文期刊>CERAMICS INTERNATIONAL >Synthesis of Li+-ion activated NaYF4: Er3+/Yb3+ phosphors via a modified solid-state process for latent fingerprint detection
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Synthesis of Li+-ion activated NaYF4: Er3+/Yb3+ phosphors via a modified solid-state process for latent fingerprint detection

机译:通过改进的固态过程合成Li +温度活性NayF4:ER3 + / YB3 +荧光粉,用于潜在的指纹检测

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Li+-ion codoped NaYF4: Er3+/Yb3+ phosphors (beta-NaYF4) with a hexagonal structure were synthesized via a modified solid-state route. High-speed planetary ball milling and solid-liquid mixing were simultaneously used to overcome the drawbacks of high synthesis temperatures in conventional routes. A pure beta-NaYF4 phase was obtained through calcination at 600 degrees C for 3 h. Increases in the codoping content of Li+ ion caused a slight shift in X-ray diffraction peak positions toward high angles owing to the distortion of the local crystal field. Field emission scanning electron microscope images showed agglomerated spherical particles of approximately 0.7 mu m with narrow size distribution. The upconversion properties of beta-NaYF4 codoped with Li+-ion were explored. Two emission bands in the green regions (520 nm and 545 nm) and one emission band in the red region (615 nm) were observed owing to the H-2(11/2)- I-4(15/2), S-4(3/2)- I-4(15/2), and F-4(9/2)- I-4(15/2) transitions of Er3+, respectively. Codoping with 6 mol% Li+ increased the upconversion intensity by three times, which was explained using the energy level diagram. The present phosphors with improved upconversion properties were utilized for latent fingerprint detection on smooth surfaces of regularly used polymer sheets, glass substrates, and compact discs. Using the present phosphors, the base elements with three-level features, such as sharp ridges, valleys, ridge flow, bifurcation, ridge shapes, and dots, were observed on all hydrophilic and hydrophobic surfaces. The prepared phosphors exhibited promising characteristics to detect the features of fingerprint impression for individual identification in forensic applications.
机译:通过改性固态的途径合成Li + inionededed nayf4:Er3 + / Yb3 +磷光体(Beta-nayf4),具有六边形结构。同时使用高速行星球铣削和固液混合来克服常规途径中高合成温度的缺点。通过在600℃下煅烧获得纯β-NayF4相3小时。由于局部晶体场的变形,Li +离子的编码含量增加了X射线衍射峰位置的略微移位。场发射扫描电子显微镜图像显示窄尺寸分布窄的凝聚球颗粒约0.7μm。探讨了与Li + inion编排的Beta-Nayf4的上转化性质。由于H-2(11/2) - &gt,在绿色区域(520nm和545nm)中的两个发射带(520nm和545nm)和红色区域(615nm)中的一个发射带; I-4(15/2),S-4(3/2) - & I-4(15/2)和F-4(9/2) - & I-4(15/2)分别转换ER3 +。用6mol%Li +的编码增加了三次上升强度,这是使用能量水平图解释的三次。具有改善的上变化性质的本磷光体用于潜在的聚合物片,玻璃基板和光盘的光滑表面上的潜在指纹检测。使用本磷光体,在所有亲水和疏水表面上观察到具有三级特征的基本元件,例如尖锐的脊,谷,脊流,分叉,脊形状和点。制备的磷光体表现出有希望的特征,以检测指纹印象的特征,以便在法医应用中的个体鉴定中进行指纹印象。

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