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Chemiluminescent and fluorescent dual-signal graphene quantum dots and their application in pesticide sensing arrays

机译:化学发光和荧光双信号石墨烯量子点及其在农药传感阵列中的应用

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In this work, N-(aminobutyl)-N-(ethylisoluminol) (ABEI) functionalized graphene quantum dots (ABEI-GQDs) with excellent chemiluminescence (CL) and fluorescence (FL) properties were synthesized. Firstly, small 2-dimensional graphene oxide (GO) was prepared by exfoliating and crushing graphite oxide in the presence of HNO3 and KMnO4. Then the size of small 2-dimensional GO was further decreased by reduction with NaBH4 to form GQDs. After that, ABEI was immobilized to the surface of GQDs by simply stirring the mixture of GQDs and ABEI. The synthesized ABEI-GQDs demonstrated excellent CL properties when reacting with H2O2 and wavelength-tunable FL emission with increasing excitation wavelength. And the bright blue FL of ABEI-GQDs could be seen even with the naked eye. Based on their CL and FL properties, a pesticide-sensing array was developed for the differentiation of pesticides. It was found that the sensing strategy could distinguish five pesticides with different concentrations, including thiamethoxam, flubendiamide, dimethoate, dipterex and chlorpyrifos. Novel CL and FL dual-signal graphene quantum dots ABEI-GQDs were obtained for the first time, which may find more applications in bioassays and bioimaging in the future.
机译:在这项工作中,合成了N-(氨基丁基)-N-(乙基氨基醇)(ABEI)官能化石墨烯量子点(ABEI-GQDS),具有优异的化学发光(CL)和荧光(FL)性质。首先,通过在HNO 3和KmnO 4存在下剥离和碾碎石墨氧化物来制备小的二维石墨烯氧化物(GO)。然后通过用NaBH 4减少形成GQD,进一步降低了小2维的尺寸。之后,通过简单地搅拌GQD和Abei的混合物,将Abei固定在GQDS的表面上。合成的ABEI-GQD在与H 2 O 2和波长可调谐的流发射反应时,通过增加激发波长,在优异的CL特性上显示出优异的CL。即使用肉眼也可以看到Abei-GQDS的明亮蓝色。基于其Cl和FL属性,开发了农药传感阵列以分化杀虫剂。发现传感策略可以区分五种不同浓度的杀虫剂,包括硫昔苏肟,氟胺,二甲酯,达特雷克和紫外线。首次获得新型Cl和FL双信号石墨烯量子点ABEI-GQDS,这可能在未来的生物测定和生物模仿中找到更多的应用。

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