School of Chemistry, Chemical Engineering and Materials, Jining University, Qufu, Shandong273155, P. R. China.
School of Chemical Science and Engineering, Shanghai Key Laboratory of Chemical Assessment and Sustainability, Tongji University, Shanghai200092, P. R. China.
ACS Appl Mater Interfaces. 2022 Dec 21;14(50):56176-56184. doi: 10.1021/acsami.2c18363. Epub 2022 Dec 5.
Rewritable luminescent paper is particularly crucial, considering the ultrahigh paper consumption and confidential information security, but a highly desirable stimuli-responsive smart luminescent material with excellent water solubility has rarely been studied. Herein, a new type of rewritable paper made by highly efficient green light emissive zero-dimensional (0D) organic manganese halides is rationally designed by virtue of the reversible photoluminescence (PL) off-on switching. Specifically, the green emission can be linearly quenched by water vapor in a wide humidity range and again recovered in a dry atmosphere, which make it a smart hydrochromic PL off-on switching and humidity sensor. Benefiting from the reversible luminescence off-on switch and excellent water solubility, rewritable luminescent paper is realized through water-jet security printing technology on 0D halide-coated commercial paper with high resolution. The printed/written information can be easily cleaned by slight heating with outstanding "write-erase-write" cycle capabilities. In addition, multiple light source-induced coincident green light emissions further provide convenience to realize anti-counterfeiting, encryption and decryption of confidential information, and so forth. This work highlights the superiority of dynamic ionic-bonded 0D organic manganese halides as reversible PL switching materials in rewritable luminescent paper, high-security-level information printing, storage and protection technologies, and so forth.
可重写发光纸尤其重要,考虑到超高的纸张消耗和机密信息安全,但具有优异水溶性的高期望刺激响应智能发光材料很少被研究。在此,通过高效绿光发射零维(0D)有机锰卤化物,合理设计了一种新型可重写纸,其通过可逆光致发光(PL)关-开切换实现。具体而言,在很宽的湿度范围内,水蒸气可以线性猝灭绿色发射,并且在干燥气氛中又可以恢复,这使其成为智能水致变色 PL 关-开切换和湿度传感器。得益于可逆发光关-开开关和优异的水溶性,通过水射流安全打印技术,在 0D 卤化物涂覆的商业纸上实现了高分辨率的可重写发光纸。通过轻微加热,可轻松清除打印/书写的信息,具有出色的“写-擦-写”循环能力。此外,多个光源诱导的一致绿光发射进一步提供了方便,以实现防伪、加密和解密机密信息等功能。这项工作突出了动态离子键合 0D 有机锰卤化物作为可重写发光纸、高安全级别信息打印、存储和保护技术等中的可逆 PL 开关材料的优越性。