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一种合成具有热激活延迟荧光的多受限碳点的简单通用方法。

A Simple and Universal Approach to Synthesizing Multi-Confined Carbon Dots with Thermally Activated Delayed Fluorescence.

作者信息

Zhang Shiyu, Ma Hongyan, Sun Lingbo, Li Miao, Zhang Yarong, Ma Jing, Wang Yixuan, Zhang Yuecheng

机构信息

College of Chemistry and Chemical Engineering, Key Laboratory of Analytical Technology and Detection of Yan'an, Yan'an University, Yan'an, 716000, Shaanxi, People's Republic of China.

Medical College of Yan'an University, Yan'an University, Yan'an, 716000, Shaanxi, People's Republic of China.

出版信息

J Fluoresc. 2024 Aug 14. doi: 10.1007/s10895-024-03901-8.

Abstract

Afterglow materials possess the remarkable capability to harness the energy and subsequently emit light after irradiation is turned off. Owing to their extraordinary ultralong lifetime, afterglow materials have garnered significant interest across various domains such as sensing, optoelectronics, bioimaging, and information encryption. However, these materials typically exhibit temperature sensitivity, rendering their afterglow emission susceptible to efficient quenching at room temperature. Consequently, this study presents herein a straightforward, simple, and universal approach for synthesizing metal-free carbon dots (CDs) endowed with thermally activated delayed fluorescence (TADF) characteristics at room temperature. In this study, TADF-CDs were simply synthesized by pyrolyzing boronic acid (BA) and urea at 500 ℃ for 3 h. Benefiting from the multi-confined effects facilitated by the robust structure of BA matrix, in conjunction with the co-doped heteroatoms of nitrogen and boron, the resultant TADF-CDs manifest remarkably prolonged afterglow TADF emission, characterized by a calculated lifetime of 184.64 ms; moreover, the blue afterglow emission remains perceptible to the naked eye for more than 6 s. The attributes of TADF-CDs were comprehensively elucidated through rigorous characterization, and the universality of the approach was corroborated through experimentation involving fourteen control CDs. Leveraging their distinctive TADF attributes, the prepared TADF-CDs were subsequently employed in advanced applications such as anti-counterfeiting and information encryption.

摘要

余辉材料具有显著的能力,能够在光照关闭后利用能量并随后发光。由于其超长的寿命,余辉材料在传感、光电子学、生物成像和信息加密等各个领域引起了广泛关注。然而,这些材料通常表现出温度敏感性,使得它们的余辉发射在室温下容易被有效猝灭。因此,本研究在此提出了一种直接、简单且通用的方法,用于合成在室温下具有热激活延迟荧光(TADF)特性的无金属碳点(CDs)。在本研究中,通过在500℃下将硼酸(BA)和尿素热解3小时,简单地合成了TADF-CDs。得益于BA基质的坚固结构所促进的多重限制效应,以及氮和硼的共掺杂杂原子,所得的TADF-CDs表现出显著延长的余辉TADF发射,计算得出的寿命为184.64毫秒;此外,蓝色余辉发射在肉眼下可察觉超过6秒。通过严格的表征全面阐明了TADF-CDs的特性,并通过涉及14种对照CDs的实验证实了该方法的通用性。利用其独特的TADF特性,制备的TADF-CDs随后被应用于防伪和信息加密等先进应用中。

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