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An innovative and eco-friendly modality for synthesis of highly fluorinated graphene by an acidic ionic liquid: Making of an efficacious vehicle for anti- cancer drug delivery

机译:一种通过酸性离子液体合成高度氟化石墨烯的创新型环保方法:制造用于抗癌药物递送的有效载体

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摘要

Fluorination of graphene nanomaterials has multitude merits owing to the peculiar temperament of the carbonfluorine (C-F) bond. However, the current synthesis modalities of fluorinated graphene (FG) are based on the usage of toxic materials at high temperatures, which are problematic to be used. The methods to overcome these problems are challenging for chemists. Ionic liquids (ILs) have been used in several chemical processes as auxiliaries and eco-friendly alternatives instead of volatile organic solvents because of their properties. Consequently, herein we exploited a highly effective and green process for the synthesis of FG at mild temperature (80 degrees C) by using ammonium fluoride salt as fluorine agent and a synthesized acidic IL ([TEA](+) [TFA](-)) as a solvent. Our goal was to synthesize enriched FG with a high degree of fluorination (66.4 wt% of F) and F/C ratio (2.2), which measured and confirmed by XPS analysis. Subsequently, the obtained FG was used as a nanocarrier for delivery of curcumin to cancerous cells. The in-vitro results showed that these nanosheets possessed a higher Cur-loading efficiency (78.43%) than commercial FG (52.12%) due to the sheet-like structure with folded edges. This, in turn, translated into an excellent in-vitro anti-cancer effect when tested against cancerous cells.
机译:石墨烯纳米材料的氟化由于碳氟(C-F)键的特殊性状而具有许多优点。然而,目前的氟化石墨烯(FG)的合成方式是基于在高温下使用有毒材料,这是有问题的。克服这些问题的方法对化学家来说是具有挑战性的。由于离子液体(ILs)的特性,它们已在多种化学过程中用作助剂和环保替代品,代替了挥发性有机溶剂。因此,本文我们通过使用氟化铵盐作为氟剂和合成的酸性IL([TEA](+)[TFA](-),在温和的温度(80摄氏度)下开发了一种高效且绿色的合成FG的方法。 )作为溶剂。我们的目标是合成具有高氟化度(占F的66.4 wt%)和F / C比(2.2)的富集FG,并通过XPS分析对其进行测量和确认。随后,将获得的FG用作用于将姜黄素递送至癌细胞的纳米载体。体外结果表明,由于具有折叠边缘的片状结构,这些纳米片具有比商业FG(52.12%)更高的固化加载效率(78.43%)。反过来,在针对癌细胞进行测试时,这又转化为出色的体外抗癌效果。

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  • 来源
    《Applied Surface Science》 |2020年第15期|146071.1-146071.11|共11页
  • 作者

  • 作者单位

    Amirkabir Univ Technol Dept Chem Tehran 1591634311 Iran|Bam Univ Med Sci Sch Med Student Res Comm Bam 4340847 Iran;

    Amirkabir Univ Technol Dept Chem Tehran 1591634311 Iran;

    Amirkabir Univ Technol Dept Polymer Engn & Color Technol Tehran 1591634311 Iran;

    Univ Tehran Med Sci Inst Pharmaceut Sci TIPS Tehran 1417614411 Iran;

    Univ South Bohemia Fac Sci Branisovska 1760 Ceske Budejovice 37005 Czech Republic;

    Tech Univ Denmark Dept Micro & Nanotechnol Bioinspired Nanomat Lab DTU Nanotech DK-2800 Lyngby Denmark;

    Tech Univ Denmark Ctr Intestinal Absorpt & Transport Biopharmaceut Inst Biotherapeut Engn & Drug Targeting Dept Hlth Technol DK-2800 Lyngby Denmark;

    Univ Wollongong Illawarra Hlth & Med Res Inst Wollongong NSW 2522 Australia|Univ Wollongong ARC Ctr Excellence Electromat Sci Intelligent Polymer Res Inst AIIM Facil Wollongong NSW 2522 Australia;

    Tech Univ Denmark Dept Micro & Nanotechnol Bioinspired Nanomat Lab DTU Nanotech DK-2800 Lyngby Denmark|Imperial Coll London Dept Chem Mol Sci Res Hub London W12 0BZ England;

    Tech Univ Denmark Dept Mech Engn DK-2800 Lyngby Denmark;

    Tech Univ Denmark Ctr Intestinal Absorpt & Transport Biopharmaceut Inst Biotherapeut Engn & Drug Targeting Dept Hlth Technol DK-2800 Lyngby Denmark|Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Dent Regenerat Biomat NL-6525 EX Nijmegen Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Eco-friendly synthesis; Fluorinated graphene; Mild-temperature fluorination; Ionic liquid; Curcumin loading efficiency; Cancer drug delivery;

    机译:环保合成;氟化石墨烯;温和氟化;离子液体;姜黄素加载效率;癌症药物输送;

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