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基于单发色团的白光发射水凝胶,具有可调荧光和可图案化性。

Single Chromophore-Based White-Light-Emitting Hydrogel with Tunable Fluorescence and Patternability.

出版信息

ACS Appl Mater Interfaces. 2018 Nov 14;10(45):39343-39352. doi: 10.1021/acsami.8b12619. Epub 2018 Nov 1.

Abstract

Bioluminescence is widespread in nature such as the jellyfish, which inspires scientists to design polymer hydrogels with tunable fluorescence. However, it remains a big challenge to develop white-light-emitting hydrogels with local tunability of the fluorescent behavior. Herein, we report a white fluorescent hydrogel prepared by one-pot micellar copolymerization of hydrophilic acrylamide and hydrophobic single donor-acceptor chromophore monomer, in which the unimer and the dimer of the chromophore coexist and generate high- and low-energy emission, respectively, under excitation. The fluorescent behavior of the hydrogel can be well tuned by phototreatment or heat treatment that induces unimer-to-dimer transformation of the chromophore and thus variation of the fluorescent color from blue to white and then to yellow. The fluorescence can also be reversibly switched off by forming terpyridine-Cu chelate complexes and recovered by using chelating agent to extract the Cu ions out of the gel matrix. These properties afford patterning the fluorescent hydrogel, which is transparent under daylight yet shows the pattern under ultraviolet light. These patterned fluorescent hydrogels should find applications in protected message display for improved information security.

摘要

生物发光在自然界中很普遍,例如水母,这启发科学家设计出具有可调荧光的聚合物水凝胶。然而,开发具有局部荧光行为可调性的白光发射水凝胶仍然是一个巨大的挑战。在此,我们报告了一种通过亲水性丙烯酰胺和疏水性单供体-受体发色团单体的一锅胶束共聚制备的白色荧光水凝胶,其中发色团的单体和二聚体共存,并在激发下分别产生高能和低能发射。水凝胶的荧光行为可以通过光处理或热处理进行很好地调节,这会引起发色团单体到二聚体的转化,从而使荧光颜色从蓝色变为白色,然后变为黄色。通过形成三吡啶-Cu 配合物复合物,荧光可以被可逆地关闭,并使用螯合剂将 Cu 离子从凝胶基质中提取出来以恢复荧光。这些特性使得对荧光水凝胶进行图案化成为可能,在日光下,水凝胶是透明的,但在紫外线下则可以显示出图案。这些图案化的荧光水凝胶应该在保护信息显示方面得到应用,以提高信息安全性。

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