Department of Chemistry, Faculty of Applied Science, Umm-Al-Qura University, Makkah, Saudi Arabia.
Department of Chemistry, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh, Saudi Arabia.
Luminescence. 2022 Jul;37(7):1152-1161. doi: 10.1002/bio.4269. Epub 2022 May 9.
Forgery and low-quality products pose a danger to society. Therefore, there are increasing demands for the production of easy-to-recognize and difficult-to-copy anticounterfeiting materials. Products with smart photochromic and fluorescence properties can change colour and emission spectra responding to a light source. In this context, we devised a straightforward preparation of a luminescent polyvinyl alcohol/carboxymethyl cellulose (PVA/CMC) nanocomposite to function as a transparent labelling film. The lanthanide-doped aluminate (LdA) was prepared in the nanoparticle form to indicate diameters of 35-115 nm. Different ratios of the LdA were physically dispersed in the PVA/CMC nanocomposite label film to provide photochromic, ultraviolet protection, antimicrobial activity, and hydrophobic properties. Fluorescence peaks were detected at 365 and 519 nm to indicate a colour change to green. As a result of increasing the phosphor ratio, improved superhydrophobic activity was achieved as the contact angle was increased from 126.1° to 146.0° without affecting the film's original physical and mechanical properties. Both ultraviolet (UV) light protection and antibacterial activity were also investigated. The films showed a quick and reversible photochromic response without fatigue. The current strategy reported the development of a photochromic smart label that is transparent, cost effective, and flexible. As a result, numerous anticounterfeiting products can benefit from the current label for a better market. LdA-loaded PVA/CMC films demonstrated antibacterial activity between poor, good, very good, and outstanding as the percentage of LdA in the film matrix increased. The current film can be applied as a transparent photochromic security barcode for anticounterfeiting applications and smart packaging.
伪造和低质量产品对社会构成威胁。因此,对于易于识别且难以复制的防伪材料的需求日益增加。具有智能光致变色和荧光性能的产品可以响应光源改变颜色和发射光谱。在这种情况下,我们设计了一种简单的方法来制备发光聚乙烯醇/羧甲基纤维素(PVA/CMC)纳米复合材料,用作透明标签膜。将掺镧的铝酸盐(LdA)制备成纳米颗粒形式,其直径为 35-115nm。将不同比例的 LdA 物理分散在 PVA/CMC 纳米复合标签膜中,以提供光致变色、紫外线保护、抗菌活性和疏水性。在 365nm 和 519nm 处检测到荧光峰,表明颜色变为绿色。随着荧光粉比例的增加,接触角从 126.1°增加到 146.0°,超疏水性活性得到改善,而不会影响薄膜的原始物理和机械性能。还研究了紫外线(UV)光保护和抗菌活性。该薄膜表现出快速且可逆的光致变色响应,无疲劳。所报道的当前策略开发了一种透明、经济且灵活的光致变色智能标签。因此,当前标签可以使许多防伪产品受益于更好的市场。随着薄膜中 LdA 百分比的增加,LdA 负载的 PVA/CMC 薄膜表现出抗菌活性,从差、好、非常好到优秀。当前的薄膜可以用作透明光致变色安全条码,用于防伪应用和智能包装。