Department of Physics, Sai Vidya Institute of Technology, VTU, Bangalore 560064, India; Research and Development Center, Bharathiar University, Coimbatore 641046, India.
Prof. C.N.R. Rao Centre for Advanced Materials Research, Tumkur University, Tumkur 572 103, India.
J Colloid Interface Sci. 2018 Oct 15;528:443-456. doi: 10.1016/j.jcis.2018.04.104. Epub 2018 May 19.
Red colour light emitting Eu ions activated MoO nanophosphors (NPs) were prepared through an ultrasound assisted sonochemical method using Aloe Vera (A.V.) gel as a bio-surfactant. Properties like crystal structure, morphology, optical band gap, luminescent properties, radiative parameters of prepared samples and their use in latent fingerprint (LFPs) visualization were reported. Powder X-ray diffraction results revealed the single orthorhombic crystal structure of the prepared samples, which specifies effective substitution of dopant ions. Morphology of NPs exhibits the hexagonal rod-like structures with size of ∼10 nm. Photoluminescence (PL) emission spectra exhibited sharp, intense peaks at ∼539 nm, 593 nm, 615 nm, 651 nm and 702 nm attributed to D → F, D → F, D → F, D → F and D → F transitions of Eu ions respectively. Judd-Ofelt (J-O) theory was used to estimate the PL intensity parameters and Eu-O ligand behavior. The International Commission on Illumination coordinates of the prepared samples located in the pure red region. The optimized sample can be explored as a novel sensing material for the visualization of LFPs on various surfaces under 254 nm UV light. Clear level-3 patterns (sweat pores) were observed in the LFPs and their decay was very slow compared to the LFPs obtained from commercial powders. The photometric characterization of the prepared samples reveals the suitability of the MoO:Eu NPs for pure red emission in light-emitting diode, better visualization of LFPs and anti-counterfeiting applications.
通过超声辅助声化学法,使用库拉索芦荟 (Aloe Vera, A.V.) 凝胶作为生物表面活性剂,制备了红色发光 Eu 离子激活的 MoO 纳米荧光粉 (NPs)。报道了样品的晶体结构、形貌、光学带隙、发光性能、辐射参数及其在潜伏指纹 (Latent Fingerprint, LFPs) 可视化中的应用。粉末 X 射线衍射结果表明,所制备样品具有单一正交晶相结构,这表明掺杂离子的有效取代。NPs 的形貌呈现出六方棒状结构,尺寸约为 10nm。光致发光 (Photoluminescence, PL) 发射光谱在 ∼539nm、593nm、615nm、651nm 和 702nm 处显示出尖锐、强的峰,分别归因于 Eu 离子的 D → F、D → F、D → F、D → F 和 D → F 跃迁。使用 Judd-Ofelt (J-O) 理论估算了 PL 强度参数和 Eu-O 配体行为。所制备样品的国际照明委员会 (International Commission on Illumination, CIE) 坐标位于纯红色区域。优化后的样品可作为一种新型传感材料,用于在 254nm 紫外光下各种表面的 LFPs 可视化。在 LFPs 中观察到清晰的 3 级图案(汗孔),与从商业粉末获得的 LFPs 相比,其衰减非常缓慢。所制备样品的光度特性表明,MoO:Eu NPs 适合用于发光二极管的纯红色发射、LFPs 的更好可视化和防伪应用。