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Nanostructured Graphene Oxide Dots: Synthesis CharacterizationPhotoinduced Electron Transfer Studies and Detection of Explosives/Biomolecules

机译:纳米结构的氧化石墨烯点:合成表征光诱导电子转移研究以及炸药/生物分子的检测

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摘要

Herein, we report the preparation of graphene oxide dots (GO dots) by fine-tuning the carbonization degree of citric acid. The structure of GO dots was characterized by absorption spectroscopy, Fourier transform infrared spectroscopy, Raman spectroscopy, as well as high-resolution scanning electron microscopy and transmission electron microscopy analyses. The typical particle size of the GO dots was 42 nm. The fluorescent characteristics of the GO dots were analyzed by fluorescence spectroscopy. Once excited at 360 nm, the GO dots were fluorescent in the range of 450–550 nm, which was dependent on the excitation wavelength. Further, GO dots were effectively utilized for multifarious applications such as photoinduced electron transfer and detection of explosives and biomolecules. The emission property of GO dots was competently quenched by viologens, picric acid (PA), and bilirubin (BR). The mechanism of quenching by viologens and explosives/biomolecules was found to be due to photoinduced electron transfer and the internal filter effect, respectively. Intriguingly, the detection minimum ofPA is in the nanomolar level. Toward commercialization, the economictest strips have also been introduced for the identification of PA.Furthermore, the GO dots have been applied as an efficient luminescentbioprobe for a selective and perceptive finding of BR.
机译:在此,我们报告了通过微调柠檬酸的碳化程度来制备氧化石墨烯点(GO点)的方法。 GO点的结构通过吸收光谱,傅立叶变换红外光谱,拉曼光谱以及高分辨率扫描电子显微镜和透射电子显微镜分析来表征。 GO点的典型粒径为42nm。通过荧光光谱分析GO点的荧光特性。一旦在360 nm处激发,GO点在450–550 nm范围内发出荧光,这取决于激发波长。此外,GO点被有效地用于多种应用,例如光致电子转移以及爆炸物和生物分子的检测。 GO点的发射特性已被紫精,苦味酸(PA)和胆红素(BR)有效淬灭。发现紫精和炸药/生物分子的淬灭机理分别是由于光致电子转移和内部过滤作用。有趣的是,PA处于纳摩尔水平。走向商业化,经济还引入了测试条来鉴定PA。此外,GO点已被用作有效的发光生物探针可选择性地发现BR。

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