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具有绿光激发的长寿命室温磷光晶体

Long-Lived Room Temperature Phosphorescence Crystals with Green Light Excitation.

作者信息

Zheng Yan, Wang Zhonghao, Liu Jiawei, Zhang Yongfeng, Gao Liang, Wang Chang, Zheng Xian, Zhou Qian, Yang Yan, Li Youbing, Tang Hailong, Qu Lunjun, Zhao Yanli, Yang Chaolong

机构信息

School of Materials Science and Engineering, Chongqing University of Technology, Chongqing, 400054 China.

Divisions of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore 637371.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 6;14(13):15706-15715. doi: 10.1021/acsami.2c04141. Epub 2022 Mar 23.

Abstract

Long-lived room temperature phosphorescence (RTP) materials are promising for applications in various fields including security information, medical diagnostics, and molecular imaging because of their unique optical properties. Previous RTP materials are mainly excited by ultraviolet light, while synthesizing long-lived RTP materials with visible-light-excitation remains a challenge. In particular, long-lived RTP materials that can be excited by green light are rare. Herein, a feasible and concise chemical strategy for constructing hydrogen-bonded frameworks in an aqueous environment is developed to fabricate large-size, green-light-excited, and excitation-dependent long-lived RTP carbon dot crystals (m,p/CDs-ME). The RTP performance of the crystals exhibits strong excitation wavelength dependence, leading to a full range of visible-light tuning from blue to red. Importantly, the maximum excitation wavelength of the RTP crystals is around 500 nm, thus successfully realizing green light excitation. m,p/CDs-ME presents long-lived phosphorescence (130 ms) under 500 nm excitation in aqueous solution, making it highly suitable for dopamine detection. This work not only provides a general guideline for the development of large size long-lived RTP crystals but also extends the operation scope of long-lived RTP materials in the detection of biomarkers by visible light excitation.

摘要

长寿命室温磷光(RTP)材料因其独特的光学性质,在安全信息、医学诊断和分子成像等各个领域都具有广阔的应用前景。以往的RTP材料主要由紫外光激发,而合成具有可见光激发的长寿命RTP材料仍然是一个挑战。特别是,能够被绿光激发的长寿命RTP材料很少见。在此,我们开发了一种在水环境中构建氢键框架的可行且简洁的化学策略,以制备大尺寸、绿光激发且依赖激发的长寿命RTP碳点晶体(m,p/CDs-ME)。该晶体的RTP性能表现出强烈的激发波长依赖性,从而实现了从蓝色到红色的全可见光范围调谐。重要的是,RTP晶体的最大激发波长约为500 nm,从而成功实现了绿光激发。m,p/CDs-ME在水溶液中500 nm激发下呈现长寿命磷光(130 ms),使其非常适合多巴胺检测。这项工作不仅为大尺寸长寿命RTP晶体的开发提供了一般指导,还扩展了长寿命RTP材料在可见光激发下检测生物标志物的应用范围。

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