Alternative Energy Materials Section, Advanced Materials and Devices Division, and ‡Academy of Scientific and Innovative Research (AcSIR), CSIR-National Physical Laboratory Campus , Dr K S Krishnan Road, New Delhi 110012, India.
ACS Appl Mater Interfaces. 2017 Apr 26;9(16):14301-14308. doi: 10.1021/acsami.7b03353. Epub 2017 Apr 17.
The duplicity of important documents has emerged as a serious problem worldwide. Therefore, many efforts have been devoted to developing easy and fast anticounterfeiting techniques with multicolor emission. Herein, we report the synthesis of multicolor luminescent lanthanide-doped YO nanorods by hydrothermal method and their usability in designing of unclonable security codes for anticounterfeiting applications. The spectroscopic features of nanorods are probed by photoluminescence spectroscopy. The YO:Eu, YO:Tb, and YO:Ce nanorods emit hypersensitive red (at 611 nm), strong green (at 541 nm), and bright blue (at 438 nm) emissions at 254, 305, and 381 nm, respectively. The SEM and TEM/HRTEM results reveal that these nanorods have diameter and length in the range of 80-120 nm and ∼2-5 μm, respectively. The two-dimensional spatially resolved photoluminescence intensity distribution in nanorods is also investigated by using confocal photoluminescence microscopic technique. Further, highly luminescent unclonable security codes are printed by a simple screen printing technique using luminescent ink fabricated from admixing of lanthanide doped multicolor nanorods in PVC medium. The prospective use of these multicolor luminescent nanorods provide a new opportunity for easily printable, highly stable, and unclonable multicolor luminescent security codes for anti-counterfeiting applications.
重要文件的双重性已成为全球范围内的一个严重问题。因此,人们投入了大量精力来开发具有多色发射的简便快速防伪技术。在此,我们通过水热法合成了多色发光镧系掺杂 YO 纳米棒,并将其用于设计用于防伪应用的不可克隆安全码。通过荧光光谱法研究了纳米棒的光谱特征。YO:Eu、YO:Tb 和 YO:Ce 纳米棒分别在 254、305 和 381nm 处发射超灵敏的红色(611nm)、强绿色(541nm)和明亮的蓝色(438nm)发射。SEM 和 TEM/HRTEM 结果表明,这些纳米棒的直径和长度分别在 80-120nm 和 2-5μm 范围内。还通过使用共聚焦荧光显微镜技术研究了纳米棒中的二维空间分辨荧光强度分布。进一步,使用由掺杂有 PVC 介质中的多色纳米棒的荧光墨水制成的发光墨水通过简单的丝网印刷技术印刷出高亮度的不可克隆安全码。这些多色发光纳米棒的潜在用途为防伪应用提供了一种新的机会,可用于轻松打印、高度稳定和不可克隆的多色发光安全码。