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通过晶态基质和二氧化硅保护的双保护全无机钙钛矿纳米晶体用于三模式防伪编码。

Double-Protected All-Inorganic Perovskite Nanocrystals by Crystalline Matrix and Silica for Triple-Modal Anti-Counterfeiting Codes.

机构信息

MIIT Key Laboratory of Advanced Display Materials and Devices Institute of Optoelectronics and Nanomaterials, Herbert Gleiter Institute of Nanoscience School of Materials Science and Engineering, Nanjing University of Science and Technology , Nanjing 210094, China.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 9;9(31):26556-26564. doi: 10.1021/acsami.7b06436. Epub 2017 Jul 28.

Abstract

Novel fluorescence with highly covert and reliable features is quite desirable to combat the sophisticated counterfeiters. Herein, we report a simultaneously triple-modal fluorescent characteristic of CsPbBr@CsPbBr/SiO by the excitation of thermal, ultraviolet (UV) and infrared (IR) light for the first time, which can be applied for the multiple modal anti-counterfeiting codes. The diphasic structure CsPbBr@CsPbBr nanocrystals (NCs) was synthesized via the typical reprecipitation method followed by uniformly encapsulation into silica microspheres. Cubic CsPbBr is responsible for the functions of anti-counterfeiting, while CsPbBr crystalline and SiO are mainly to protect unstable CsPbBr NCs from being destroyed by ambient conditions. The as-prepared CsPbBr@CsPbBr/SiO NCs possess improved stability and are capable of forming printable ink with organic binders for patterns. Interestingly, the fluorescence of diphasic CsPbBr@CsPbBr/SiO capsule patterns can be reversibly switched by the heating, UV, and IR light irradiation, which has been applied as triple-modal fluorescent anti-counterfeiting codes. The results demonstrate that the perovskite@silica capsules are highly promising for myriad applications in areas such as fluorescent anti-counterfeiting, optoelectronic devices, medical diagnosis, and biological imaging.

摘要

具有高度隐蔽和可靠特征的新型荧光体是对抗复杂造假者的理想选择。在此,我们首次报道了 CsPbBr@CsPbBr/SiO 通过热、紫外 (UV) 和红外 (IR) 光激发同时具有三重模态荧光特性,可用于多种模态防伪码。通过典型的再沉淀法合成了具有两相结构的 CsPbBr@CsPbBr 纳米晶体 (NCs),然后均匀封装到硅微球中。立方 CsPbBr 负责防伪功能,而 CsPbBr 晶体和 SiO 主要用于保护不稳定的 CsPbBr NCs 免受环境条件的破坏。所制备的 CsPbBr@CsPbBr/SiO NCs 具有提高的稳定性,并且能够与有机粘合剂形成可印刷的油墨用于图案。有趣的是,两相 CsPbBr@CsPbBr/SiO 胶囊图案的荧光可以通过加热、UV 和 IR 光照射进行可逆切换,这已被应用于三重模态荧光防伪码。结果表明,钙钛矿@硅胶囊在荧光防伪、光电设备、医疗诊断和生物成像等领域具有广泛的应用前景。

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