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一种用于增强红色室温磷光的功能单元组合策略。

A functional unit combination strategy for enhancing red room-temperature phosphorescence.

作者信息

Zhao Shuaiqiang, Yang Zhiqiang, Zhang Xiangyu, Liu Haichao, Lv Yingbo, Wang Shiyin, Yang Zhongzhao, Zhang Shi-Tong, Yang Bing

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University Changchun 130012 China

出版信息

Chem Sci. 2023 Aug 22;14(36):9733-9743. doi: 10.1039/d3sc03668e. eCollection 2023 Sep 20.

Abstract

Red room-temperature phosphorescence (RTP) materials based on non-metallic organic compounds are less reported compared to the commonly found green RTP materials. Here, we propose a novel approach to obtain red RTP materials by integrating and combining two functional units, resembling a jigsaw puzzle. In this approach, benzo[][2,1,3]thiadiazole (BZT) serves as the red RTP unit, while a folding unit containing sulphur/oxygen is responsible for enhancing spin-orbit coupling (SOC) to accelerate the intersystem crossing (ISC) process. Three new molecules (SS-BZT, SO-BZT, and OO-BZT) were designed and synthesized, among which SS-BZT and SO-BZT with folded geometries demonstrate enhanced red RTP in their monodisperse films compared to the parent BZT. Meanwhile, the SS-BZT film shows a dual emission consisting of blue fluorescence and red RTP, with a significant spectral separation of approximately 150 nm, which makes the SS-BZT film highly suitable for applications in optical oxygen sensing and ratiometric detection. Within the oxygen concentration range of 0-1.31%, the SS-BZT film demonstrates a quenching constant of 2.66 kPa and a quenching efficiency of 94.24%, indicating that this probe has the potential to accurately detect oxygen in a hypoxic environment.

摘要

与常见的绿色室温磷光(RTP)材料相比,基于非金属有机化合物的红色RTP材料的报道较少。在此,我们提出了一种新颖的方法,通过整合和组合两个功能单元来获得红色RTP材料,这类似于拼图游戏。在这种方法中,苯并[][2,1,3]噻二唑(BZT)用作红色RTP单元,而含硫/氧的折叠单元负责增强自旋轨道耦合(SOC)以加速系间窜越(ISC)过程。设计并合成了三种新分子(SS-BZT、SO-BZT和OO-BZT),其中具有折叠几何结构的SS-BZT和SO-BZT在其单分散薄膜中与母体BZT相比表现出增强的红色RTP。同时,SS-BZT薄膜呈现出由蓝色荧光和红色RTP组成的双重发射,光谱分离约为150nm,这使得SS-BZT薄膜非常适合用于光学氧传感和比率检测应用。在0-1.31%的氧浓度范围内,SS-BZT薄膜的猝灭常数为2.66kPa,猝灭效率为94.24%,表明该探针具有在低氧环境中准确检测氧的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ce1/10510757/928a9a7d1128/d3sc03668e-s1.jpg

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