首页> 外文期刊>New Journal of Chemistry >Facile and green synthesis of highly fluorescent nitrogen-doped carbon dots from jackfruit seeds and its applications towards the fluorimetric detection of Au3+ ions in aqueous medium and in in vitro multicolor cell imaging
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Facile and green synthesis of highly fluorescent nitrogen-doped carbon dots from jackfruit seeds and its applications towards the fluorimetric detection of Au3+ ions in aqueous medium and in in vitro multicolor cell imaging

机译:从菠萝蜜种子的高荧光氮气掺杂碳点的容易和绿色合成及其朝向含水介质中Au3 +离子的荧光检测和体外多色细胞成像的应用

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摘要

Carbon dots (CDs) have drawn tremendous attention of researchers due to their excellent properties. Herein, we synthesized highly luminescent N-doped carbon dots (N-CDs) from jackfruit seeds used as a green carbon source by a facile, green and rapid one-step microwave-assisted method. The resulting N-CDs display excellent solubility in water, high photoluminescence (PL) quantum yield, QY (17.91%), high photostability, longer storage stability (stable up to more than 180 days without any agglomeration) and low cytotoxicity (90% upon addition of 0 to 2 mg mL(-1) of N-CDs) towards A549 cell line. In addition, the fluorescence of N-CDs is stable in a wide range of ionic strength and pH. The PL intensity of N-CDs was linearly, selectively and sensitively quenched by Au3+ ions. So we have demonstrated Au3+ sensing in aqueous media using N-CDs as the fluorophore and achieved a limit of detection of 239 nM. We also applied the obtained N-CDs as an effective fluorescent probe for in vitro multicolor cell imaging. In addition, we also synthesized gold nanoparticles (AuNPs) by using the strategy of reductive electron transfer between N-CDs and Au3+ ions.
机译:由于其优异的性质,碳点(CDS)对研究人员来说令人震惊。在此,通过通过容易,绿色和快速的一步微波辅助方法,从菠萝蜜种子中合成高发光的n掺杂的碳点(N-Cds),用作绿色和快速的一步微波辅助方法。得到的N-CD在水中显示出优异的水,高光致发光(PL)量子产率,QY(17.91%),高光增性,较长的储存稳定性(稳定超过180天,没有任何聚集)和低细胞毒性(90%向A549细胞中加入0至2mg ml(-1)的N-Cds)。另外,N-CD的荧光在宽范围的离子强度和pH中是稳定的。 N-CD的PL强度是线性的,由Au3 +离子选择性和敏感地淬灭。因此,我们已经使用N-CDS作为荧光团在水性介质中显示出Au3 +感测,并实现了239nm的检测限。我们还将获得的N-Cds应用于用于体外多色细胞成像的有效荧光探针。此外,我们还通过使用N-Cds和Au3 +离子之间的还原电子转移策略来合成金纳米颗粒(AUNP)。

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  • 来源
    《New Journal of Chemistry》 |2019年第29期|共10页
  • 作者单位

    Univ Madras Natl Ctr Ultrafast Proc Taramani Campus Chennai 600113 Tamil Nadu India;

    Univ Madras Natl Ctr Ultrafast Proc Taramani Campus Chennai 600113 Tamil Nadu India;

    Univ Madras Natl Ctr Ultrafast Proc Taramani Campus Chennai 600113 Tamil Nadu India;

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  • 正文语种 eng
  • 中图分类 化学;
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