Abdollahi Amin, Ghasemi Bita, Nikzaban Soma, Sardari Negar, Jorjeisi Saba, Dashti Ali
Department of Chemistry, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan45137-66731, Iran.
Department of Chemical Engineering, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad91779-48974, Iran.
ACS Appl Mater Interfaces. 2023 Feb 8;15(5):7466-7484. doi: 10.1021/acsami.2c22532. Epub 2023 Jan 27.
Increasing the security of anticounterfeiting materials has been the most important challenge in recent years, and the development of dual-color photoluminescent inks with multi-level security, static/dynamic emission, and dynamic color change is an important solution to overcome this problem. In this study, the multi-functionalized copolymer nanoparticles containing different functional groups (with a concentration of 20 wt %), including ester, carboxylic acid, hydroxyl, epoxide, amide, and amine groups were synthesized successfully by the emulsion polymerization method. The results showed that the particle size and morphology of nanoparticles are affected by the polarity of functional groups. The prepared multi-functionalized copolymer nanoparticles were modified physically with spiropyran (photochromic and red fluorescence emission) and coumarin (cyan emission) derivatives to develop dual-color photoluminescent polymer nanoparticles with application in static-dynamic photoluminescent anticounterfeiting inks, which have multi-level security. The investigation of optical properties indicates that the kinetics of photochromism and photoluminescence properties of samples containing spiropyran is dependent on the local polarity on the surface of polymer nanoparticles. Hence, an increase in the polarity (functionalization with amide, carboxylic acid, and hydroxyl groups) has resulted in fast photochromism, high-intensity photoluminescence emission and increased the efficiency of the photoswitchable color change of emission from cyan to pink. Dual-color photoluminescent anticounterfeiting inks were prepared by mixing polymer nanoparticles containing spiropyran with polymer nanoparticles containing coumarin, in different ratios (1:1, 1:3, 1:5, 1:8, and 1:10). Obtained results showed that prepared samples have cyan emission under UV light of 254 nm (static mode), and a dynamic photoswitching of fluorescence emission from cyan to pink (as a function of irradiation time) was also observed under UV-light irradiation of 365 nm, which is well known as a dynamic mode of emission. The responsivity and intensity of dynamic photoluminescence emission are dependent on the local polarity of the surface functional groups, in which the samples based on amide functionalized copolymer nanoparticles displayed high-intensity emission in the static mode and high-intensity photoswitchable dual-color emission in the dynamic mode, in the case of all ratios of colloid solution mixtures. Printing security tags on cellulose paper by dual-color photoluminescent inks indicates advantages such as maximum printability, resolution, brightness, and static-dynamic photoluminescence emission with high intensity for inks based on amide functionalized nanoparticles. The static-dynamic dual-color photoluminescent anticounterfeiting ink with unique properties and multi-level security was reported for the first time by the collaboration of spiropyran and coumarin. This study can open a new approach and window to the future of advanced and high-security anticounterfeiting technologies.
近年来,提高防伪材料的安全性一直是最重要的挑战,而开发具有多级安全性、静态/动态发射和动态颜色变化的双色光致发光油墨是克服这一问题的重要解决方案。在本研究中,通过乳液聚合法成功合成了含有不同官能团(浓度为20 wt%)的多功能共聚物纳米粒子,这些官能团包括酯基、羧基、羟基、环氧基、酰胺基和胺基。结果表明,纳米粒子的粒径和形态受官能团极性的影响。将制备的多功能共聚物纳米粒子用螺吡喃(光致变色和红色荧光发射)和香豆素(青色发射)衍生物进行物理改性,以开发用于静态-动态光致发光防伪油墨的双色光致发光聚合物纳米粒子,该油墨具有多级安全性。光学性质研究表明,含有螺吡喃的样品的光致变色动力学和光致发光性质取决于聚合物纳米粒子表面的局部极性。因此,极性的增加(用酰胺基、羧基和羟基官能化)导致了快速的光致变色、高强度的光致发光发射,并提高了发射从青色到粉色的光开关颜色变化效率。通过将含有螺吡喃的聚合物纳米粒子与含有香豆素的聚合物纳米粒子以不同比例(1:1、1:3、1:5、1:8和1:10)混合,制备了双色光致发光防伪油墨。所得结果表明,制备的样品在254 nm紫外光下具有青色发射(静态模式),在365 nm紫外光照射下还观察到荧光发射从青色到粉色的动态光开关(作为照射时间的函数),这是众所周知的动态发射模式。动态光致发光发射的响应度和强度取决于表面官能团的局部极性,其中基于酰胺官能化共聚物纳米粒子的样品在静态模式下显示高强度发射,在动态模式下显示高强度的光开关双色发射,对于所有比例的胶体溶液混合物均如此。用双色光致发光油墨在纤维素纸上印刷安全标签表明,基于酰胺官能化纳米粒子的油墨具有最大可印刷性、分辨率、亮度以及高强度的静态-动态光致发光发射等优点。首次通过螺吡喃和香豆素的协同作用报道了具有独特性能和多级安全性的静态-动态双色光致发光防伪油墨。本研究可为先进和高安全性防伪技术的未来开辟一条新途径和窗口。