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Water-insoluble cyclodextrin membranes for humidity detection: green synthesis, characterization and sensing performances

机译:用于湿度检测的水不溶性环糊精膜:绿色合成,表征和传感性能

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摘要

Herein, we reported the first highly stable beta-CD-based humidity sensor without the need of pre-functionalization of the QCM transducer surface. Two partially benzylated beta-cyclodextrins (beta-CDBn (x) , x = 7 and 14) were prepared via a green and one-pot synthesis in aqueous media. The macromolecular structures were methodically investigated by means of NMR, FT-IR and MALDI-TOF spectroscopies and studied with DFT calculations. XRD analysis and thermal analysis revealed an amorphous morphology with better thermal stability in comparison with pristine beta-CD. AFM characterization proved that the obtained water-insoluble cyclodextrin thin films exhibited good solution-processing characteristics and film-forming quality. Contact angle measurements evidenced a systematic increase in the surface hydrophobicity with the benzylation rate. These organic materials were investigated as sensitive membranes for humidity detection based on quartz crystal microbalance technique. The experimental investigation showed that the QCM coated with beta-CDBn7 sensitive layer exhibited good sensing performances within a wide relative humidity range of 11-98% including high sensitivity, good linearity, fast response (15 s), desirable reproducibility and high stability even at high humidity level.
机译:这里,我们报道了第一高度稳定的β-CD基湿度传感器,而不需要QCM换能器表面的预官能化。通过在含水介质中的绿色和单罐合成制备两个部分苄化β-环糊精(β-CDBN(X),X = 7和14)。通过NMR,FT-IR和MALDI-TOF光谱方法有条不紊地研究大分子结构,并用DFT计算研究。 XRD分析和热分析显示了与原始β-CD相比具有更好的热稳定性的非晶态形态。 AFM表征证明,所获得的水不溶性环糊精薄膜表现出良好的溶液加工特性和成膜质量。接触角测量证明了表面疏水性的系统增加,具有苄化速率。这些有机材料被研究为基于石英晶微观技术的湿度检测敏感膜。实验研究表明,涂有β-CDBN7敏感层的QCM在11-98%的宽度湿度范围内表现出良好的感测性能,包括高灵敏度,良好的线性度,快速响应(15秒),即使是均匀的再现性和高稳定性高湿度水平。

著录项

  • 来源
    《Journal of Materials Science》 |2018年第2期|共15页
  • 作者单位

    Univ Monastir Lab Interfaces &

    Adv Mat Fac Sci Bd Environm Monastir 5019 Tunisia;

    Univ Monastir Lab Interfaces &

    Adv Mat Fac Sci Bd Environm Monastir 5019 Tunisia;

    Univ Monastir Lab Interfaces &

    Adv Mat Fac Sci Bd Environm Monastir 5019 Tunisia;

    Univ Monastir Lab Interfaces &

    Adv Mat Fac Sci Bd Environm Monastir 5019 Tunisia;

    Univ Paris Diderot Sorbonne Paris Cite CNRS UMR 7086 ITODYS 15 rue J-A de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite CNRS UMR 7086 ITODYS 15 rue J-A de Baif F-75205 Paris 13 France;

    Univ Monastir Lab Interfaces &

    Adv Mat Fac Sci Bd Environm Monastir 5019 Tunisia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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