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氢键有机框架与碳点的超分子组装:实现用于防伪的超长室温磷光。

Supramolecular Assembly of Hydrogen-Bonded Organic Frameworks with Carbon Dots: Realizing Ultralong Aqueous Room-Temperature Phosphorescence for Anticounterfeiting.

作者信息

Cai Minjuan, Qiu Yijie, Li Feiming, Cai Shunyou, Cai Zhixiong

机构信息

College of Chemistry, Chemical Engineering and Environment, Fujian Provincial Key Laboratory of Modern Analytical Science and Separation Technology, Minnan Normal University, Zhangzhou, Fujian 363000, PR China.

Micro-Nano Organic Optical Materials Laboratory, Minnan Normal University, Zhangzhou, Fujian 363000, PR China.

出版信息

ACS Appl Mater Interfaces. 2024 Sep 4;16(35):46609-46618. doi: 10.1021/acsami.4c09567. Epub 2024 Aug 22.

Abstract

Room-temperature phosphorescent carbon dots (RTP-CDs) have received increasing attention due to their excellent optical properties and potential applications. Nevertheless, the realization of RTP-CDs in aqueous solutions remains a considerable challenge due to the water-molecule- and oxygen-induced deactivation of the triplet excitons, which leads to phosphorescence quenching. In this study, ultralong phosphorescence in water was achieved by in situ self-assembly of CDs encapsulated in a rigid hydrogen-bonded organic framework (HOF). The phosphorescence lifetime reaches an impressive 956.96 ms and exhibits long-lasting optical and structural stability in water for more than 90 days. The composite material not only has ultralong luminescence life and excellent luminescence stability but also has two-color phosphorescence emission, as well as excellent antiphotobleaching and phosphorescence stability in aqueous solution, which can solve the current problem that RTP is easily burst out by water and moisture. In addition, this study introduced a fluorescent dye based on the triplet-singlet Förster resonance energy transfer system (TS-FRET) to fine-tune the afterglow properties. This work will inspire the design of RTP systems with dual phosphor light sources and provide new strategies for the development of smart RTP materials in water.

摘要

室温磷光碳点(RTP-CDs)因其优异的光学性能和潜在应用而受到越来越多的关注。然而,由于水分子和氧气导致三重态激子失活,从而导致磷光猝灭,在水溶液中实现RTP-CDs仍然是一个相当大的挑战。在本研究中,通过原位自组装封装在刚性氢键有机框架(HOF)中的碳点,实现了水中的超长磷光。磷光寿命达到了令人印象深刻的956.96毫秒,并且在水中表现出超过90天的持久光学和结构稳定性。该复合材料不仅具有超长的发光寿命和优异的发光稳定性,而且具有双色磷光发射,以及在水溶液中优异的抗光漂白和磷光稳定性,这可以解决目前RTP容易被水和湿气猝灭的问题。此外,本研究引入了一种基于三重态-单重态福斯特共振能量转移系统(TS-FRET)的荧光染料来微调余辉性能。这项工作将激发具有双磷光光源的RTP系统的设计,并为水中智能RTP材料的开发提供新策略。

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