Ding Liu, Jin Xilang, Gao Yuchong, Kang Shouwang, Bai Haiyan, Ma Xuehao, Ai Taotao, Zhou Hongwei, Chen Weixing
Engineering Research Center of Light Stabilizers for Polymer Materials Universities of Shaanxi Province, School of Materials and Chemical Engineering, Xi'an Technological University, Xi'an, 710021, P. R. China.
School of Material Science and Engineering, Shaanxi University of Technology, Hanzhong, 723000, P. R. China.
Adv Sci (Weinh). 2024 Dec;11(48):e2409345. doi: 10.1002/advs.202409345. Epub 2024 Nov 3.
Aggregation-induced emission (AIE) carbon dot (CDs) in solid state with tunable multicolor emissions have sparked significant interest in multidimensional anti-counterfeiting. However, the realization of solid-state fluorescence (SSF) by AIE effect and the regulation of fluorescence wavelength in solid state is a great challenge. In order to solve this dilemma, the AIE method to prepare multi-color solid-state CDs with fluorescence wavelengths ranging from bright blue to red emission is employed. Specifically, by using thiosalicylic acid and carbonyl hydrazine as precursors, the fluorescence wavelength can be accurately adjusted by varying the reaction temperature from 150 to 230 °C or changing the molar ratio of the precursors from 1:1 to 1:2. Structural analysis and theoretical calculations consistently indicate that increasing the sp domains or doping with graphite nitrogen both cause a redshift in the fluorescence wavelength of CDs in the solid state. Moreover, with the multi-dimensional and adjustable fluorescence wavelength, the application of AIE CDs in the fields of multi-anti-counterfeiting encryption, ink printing, and screen printing is demonstrated. All in all, this work opens up a new way for preparing solid-state multi-color CDs using AIE effect, and further proposes an innovative strategy for controlling fluorescence wavelengths.
具有可调谐多色发射的聚集诱导发光(AIE)碳点(CDs)在固态下引发了人们对多维防伪的极大兴趣。然而,通过AIE效应实现固态荧光(SSF)以及在固态下调节荧光波长是一项巨大挑战。为了解决这一困境,采用AIE方法制备了荧光波长范围从亮蓝色到红色发射的多色固态CDs。具体而言,以硫代水杨酸和羰基肼为前驱体,通过将反应温度从150℃变化到230℃或改变前驱体的摩尔比从1:1到1:2,可以精确调节荧光波长。结构分析和理论计算一致表明,增加sp域或掺杂石墨氮都会导致固态CDs的荧光波长发生红移。此外,凭借多维且可调的荧光波长,展示了AIE CDs在多重防伪加密、油墨印刷和丝网印刷领域的应用。总而言之,这项工作为利用AIE效应制备固态多色CDs开辟了一条新途径,并进一步提出了一种控制荧光波长的创新策略。