Dual-light emitting 3D encryption with printable fluorescent-phosphorescent metal-organic frameworks
Abstrak
Abstract Optical encryption technologies based on room-temperature light-emitting materials are of considerable interest. Herein, we present three-dimensional (3D) printable dual-light-emitting materials for high-performance optical pattern encryption. These are based on fluorescent perovskite nanocrystals (NCs) embedded in metal-organic frameworks (MOFs) designed for phosphorescent host-guest interactions. Notably, perovskite-containing MOFs emit a highly efficient blue phosphorescence, and perovskite NCs embedded in the MOFs emit characteristic green or red fluorescence under ultraviolet (UV) irradiation. Such dual-light-emitting MOFs with independent fluorescence and phosphorescence emissions are employed in pochoir pattern encryption, wherein actual information with transient phosphorescence is efficiently concealed behind fake information with fluorescence under UV exposure. Moreover, a 3D cubic skeleton is developed with the dual-light-emitting MOF powder dispersed in 3D-printable polymer filaments for 3D dual-pattern encryption. This article outlines a universal principle for developing MOF-based room-temperature multi-light-emitting materials and a strategy for multidimensional information encryption with enhanced capacity and security.
Topik & Kata Kunci
Penulis (16)
Jin Woo Oh
Seokyeong Lee
Hyowon Han
Omar Allam
Ji Il Choi
Hyeokjung Lee
Wei Jiang
Jihye Jang
Gwanho Kim
Seungsoo Mun
Kyuho Lee
Yeonji Kim
Jong Woong Park
Seonju Lee
Seung Soon Jang
Cheolmin Park
Akses Cepat
- Tahun Terbit
- 2023
- Sumber Database
- DOAJ
- DOI
- 10.1038/s41377-023-01274-4
- Akses
- Open Access ✓