Hang Meng , Bicheng Zhu , Ruolun Sun , Zixuan Liu , Shaowen Cao , Kan Zhang , Jiaguo Yu , Jingsan Xu
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引用次数: 0
摘要
随着造假行为的日益猖獗,光致发光(PL)被越来越多地应用于防伪和加密领域。然而,常见的发光加密技术都是基于静态 PL 测量,很容易被伪造。在这项工作中,我们开发了一种热气相沉积(TVD)方法,使用 melem 作为独特的起始材料,合成高度均匀的氮化碳(CN)薄膜,具有独特的动态 PL 开关特性。在白色 LED 的照射下,氮化碳薄膜的蓝色聚光强度会显著增加,然后在黑暗中逐渐减弱,显示出极佳的可回收性。实验结果证明,氯化萘薄膜的结构中含有氰基,而密度泛函理论(DFT)计算表明,氰基的整合导致了氯化萘带隙内的陷阱,这表明动态聚光转换效应本质上与陷阱态的饱满度有关。因此,我们开发了一种先进的发光器件,可通过受控照明安全传输加密信息。它可以用便携式紫外线(365 纳米)灯轻松读取,并用白光 LED 有效擦除,从而防止信息泄漏,在许多应用领域都显示出巨大的潜力。
Dynamic photoluminescence switching of carbon nitride thin films for anticounterfeiting and encryption
Photoluminescence (PL) has been increasingly applied in anticounterfeiting and encryption as counterfeiting becomes more prevalent. However, common luminescent encryption techniques are based on static PL measurements and are easy to counterfeit. In this work, we have developed a thermal vapor deposition (TVD) approach using melem as the unique starting material to synthesize highly homogeneous carbon nitride (CN) thin films featuring unique dynamic PL switching properties. After being irradiated by a white LED, the blue PL intensity of the CN film increases significantly and then fades in darkness, demonstrating excellent recyclability. Experimental results prove that CN films contain cyano groups in the structure, and density functional theory (DFT) calculations indicate that the integration of cyano groups results in traps within the bandgap of CN, suggesting that the dynamic PL switching effect is essentially associated with the fullness of the trap states. We have therefore developed an advanced luminescent device for the secure transmission of encrypted information through controlled illumination. It can be easily read with a portable UV (365 nm) lamp and effectively erased using the white LED, thereby preventing information leakage and showing great potential for many applications.
期刊介绍:
Chinese Journal of Structural Chemistry “JIEGOU HUAXUE ”, an academic journal consisting of reviews, articles, communications and notes, provides a forum for the reporting and discussion of current novel research achievements in the fields of structural chemistry, crystallography, spectroscopy, quantum chemistry, pharmaceutical chemistry, biochemistry, material science, etc. Structural Chemistry has been indexed by SCI, CA, and some other prestigious publications.