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Hydrothermal conversion of Magnolia liliiflora into nitrogen-doped carbon dots as an effective turn-off fluorescence sensing, multi-colour cell imaging and fluorescent ink

机译:玉兰Liliiflora的水热转化为氮气掺杂的碳点作为有效的关闭荧光感测,多色细胞成像和荧光油墨

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The present work illustrates the potential uses of nitrogen-doped multi-fluorescent carbon dots (N-CDs) for Fe3+ sensing, cellular multi-colour imaging, and fluorescent ink. N-CDs were synthesized using Magnolia liliiflora flower by the simple hydrothermal method. The resulted N-CDs was found to be nearly spherical in shape with the size of about 4 +/- 1 nm and showed competitive quantum yield around 11%. The synthesized N-CDs with uniform size distribution and high content of nitrogen and oxygen-bearing functional groups exhibit excellent dispersibility in aqueous media. The N-CDs were able to detect a high concentration of Fe3+ ions (1-1000 mu M) with a limit of detection is about 1.2 mu M by forming N-CDs-Fe3+ complex due to the functional groups such as nitrogen, carbonyl and carboxyl on the surface of N-CDs. Thus they could be used to remove pollutants from industrial wastewater. The electronic charge on the surface of the N-CDs and N-CDs-Fe3+ complex (zeta potential) is around -36 and 18 mV, respectively. In addition, these N-CDs show excitation-dependent fluorescence that was utilized for multi-colour in vitro cellular imaging in rat liver cells (Clone 9 hepatocytes). The N-CDs are rapidly uptake in the cell cytoplasm and showed high cytocompatibility on cellular morphology. Moreover, as the N-CDs possess strong fluorescence and anti-coagulation they could be utilized in fluorescent ink pens.
机译:本作者说明了Fe3 +感测,细胞多色成像和荧光油墨的氮掺杂多荧光碳点(N-CD)的潜在用途。通过简单的水热法使用玉兰Liliiflora花合成N-CD。发现所得的N-CD为几乎是球形的,尺寸为约4 +/- 1nm,并且显示出竞争量的量子产量约为11%。具有均匀尺寸分布和高含量的氮和含氧官能团的合成的N-Cd表现出优异的水性介质中的分散性。通过形成诸如氮,羰基和碳基和N-CD表面的羧基。因此,它们可用于去除工业废水的污染物。 N-CDS和N-CDS-Fe3 +复合物(Zeta电位)的表面上的电子电荷分别为-36和18mV。此外,这些N-CD显示出激发依赖性荧光,其用于大鼠肝细胞(克隆9肝细胞)中的多色体外细胞成像。 N-CD在细胞细胞质中快速摄取,并在细胞形态上显示出高细胞相容性。此外,由于N-CD具有强烈的荧光和抗凝血,它们可用于荧光墨水钢笔。

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