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Ionic liquid-assisted electrochemical exfoliation of carbon dots of different size for fluorescent imaging of bacteria by tuning the water fraction in electrolyte

机译:通过调节电解质中的水份对不同大小的碳点进行离子液体辅助电化学剥落以对细菌进行荧光成像

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摘要

An electrochemical approach is introduced for synthesis of carbon dots (CDs) by exfoliating graphite rods at a voltage of 15 V in an electrolyte consisting of a mixture of water and two ionic liquids. It is found that the size of the CDs can be tuned by varying the fraction of water in the mixed electrolyte; CDs in sizes of 4.9, 4.1 and 3.1 nm are obtained if the electrolyte contains water in fractions of 24, 38 and 56 %, respectively. The CDs have a quantum yield of almost 10 % and display the typical excitation wavelength-dependent maxima of photoluminescence, strongest at excitation/emission wavelengths of 360/440 nm. Fourier transform infrared and X-ray photoelectron spectroscopy show the CDs to have oxygen functional groups on their surface which strongly improve solubility. The CDs were applied to image cells of the electricity-producing bacteria Shewanellaoneidensis MR-1.>Graphical AbstractAn electrochemical approach is introduced to synthesize carbon dots by exfoliating graphite rods in mixed electrolyte of water and ionic liquids. The increasing size of carbon dots was realized by reducing the volume of water in the mixed electrolyte. The carbon dots were used to fluorescently image the electricity-producing bacterium Shewanellaoneidensis MR-1.
机译:引入了一种电化学方法来合成碳点(CDs),方法是在由水和两种离子液体的混合物组成的电解质中以15V的电压剥去石墨棒的碳棒。已经发现,可以通过改变混合电解质中水的含量来调节CD的尺寸。如果电解液中水的比例分别为24%,38%和56%,则CD的尺寸分别为4.9、4.1和3.1 nm。 CD的量子产率接近10%,并显示出典型的与激发波长有关的光致发光最大值,在360/440 nm的激发/发射波长下最强。傅里叶变换红外和X射线光电子能谱显示CD的表面具有氧官能团,可大大提高溶解度。将CD应用于发电细菌Shewanellaoneidensis MR-1的图像单元。<!-fig ft0-> <!-fig @ position =“ anchor” mode = article f4-> <!-fig mode =“ anchored” f5-> >图形摘要<!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->引入了电化学方法通过在水和离子液体的混合电解质中剥落石墨棒来合成碳点。碳点尺寸的增加是通过减少混合电解质中的水量实现的。碳点用于荧光成像发电细菌Shewanellaoneidensis MR-1。

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