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首页> 外文期刊>Nanoscale >Dye-functionalized metal–organic frameworks with the uniform dispersion of MnO2 nanosheets for visualized fluorescence detection of alanine aminotransferase
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Dye-functionalized metal–organic frameworks with the uniform dispersion of MnO2 nanosheets for visualized fluorescence detection of alanine aminotransferase

机译:Dye-functionalized有机框架与汇总nanosheets的均匀分散可视化荧光检测丙氨酸转氨酶

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摘要

The wide applications of metal–organic framework (MOF) luminescent materials in the field of optics have attracted the general attention of researchers. Therefore, the development of simple and multifunctional MOF light-emitting platforms have become a research hotspot. The composites (MnO2@ZIF-8-luminol) were prepared by an in situ synthesis method and room-temperature covalent reaction. The composites and o-phenylenediamine (OPD) constitute a dual emission sensor for detecting alanine aminotransferase (ALT). OPD can be oxidized by MnO2 to 2,3-diaminophenazine (DAP) with yellow fluorescence emission, which inhibits the blue emission of luminol through fluorescence resonance energy transfer (FRET). The presence of tiopronin (TP) will destroy the FRET process, extinguishing the yellow fluorescence emission and restoring the blue fluorescence emission. The special effect between ALT and TP will further reverse the changes in the two fluorescent signals. Moreover, in the detection process, when the blue and yellow fluorescence energies in the system are within a certain range, a new white light emission will be generated, which causes the sensing of ALT to present ternary visualization. In addition, a high-security anti-counterfeiting platform is constructed by using the prepared materials and agarose hydrogels. The anti-counterfeiting platform can encrypt information on demand according to the luminous characteristics of different materials. This study not only provides a typical case of ternary visualization sensing by MOF-based materials but also develops a possible method for the construction of a MOF-based hydrogel anti-counterfeiting platform.
机译:的广泛应用有机框架(MOF)发光材料领域的光学吸引了广大的关注研究人员。和多功能MOF发光平台已成为一个研究热点。(MnO2@ZIF-8-luminol)是由一个原位合成方法和室温共价的反应。(门诊部当)构成双发射传感器检测丙氨酸转氨酶(ALT)。被汇总到2氧化,3-diaminophenazine (DAP)用黄色荧光发射,抑制鲁米诺的蓝色发射荧光共振能量转移(FRET)。tiopronin (TP)将摧毁烦恼的过程,灭火的黄色荧光发射和恢复的蓝色荧光发射。ALT和TP将进一步之间的特殊效果扭转两个荧光的变化信号。蓝色和黄色荧光的能量系统在一定范围内,一个新的白色放出光线,将生成的原因三元的传感ALT的礼物可视化。由防伪平台使用准备材料和琼脂糖水凝胶。根据加密信息的需求不同材料的发光特征。这项研究不仅提供了一个典型的案例通过基于mof三元可视化传感材料也发展一个可能的方法建设一个基于mof的水凝胶防伪平台。

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