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CNT-anchored cellulose fluorescent nanofiber membranes as a fluorescence sensor for Cu2+ and Cr3+

机译:CNT锚固纤维素荧光纳米纤维膜作为Cu2 +和Cr3 +的荧光传感器

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摘要

1,4-Dihydroxyanthraquinone (1,4-DHAQ, a fluorophore) doped carbon nanotubes@cellulose (1,4-DHAQ-doped CNTs@CL) nanofibrous membranes have been prepared via electrospinning and subsequent deacetylation in this work. They have been successfully applied for highly sensitive detection of Cu2+ in aqueous solution. The surface area per unit mass (S/M) ratio of the nanofibrous membranes was enhanced by incorporating the CNTs into cellulose. Moreover, the excellent metal ion sorption capability of the CNTs improved the sensitivity of the sensing materials. Both of the two points mentioned above significantly improved the lower detection limit of fluorescence sensing as expected. As the resultant byproduct of Cu2+-contaminated 1,4-DHAQ-doped CNTs@CL nanofibrous membranes showed recovered fluorescence by extra addition of Cr3+ in solution, 1,4-DHAQ and Cu2+ co-doped CNTs@CL (denoted as 1,4-DHAQ/Cu2+ co-doped CNTs@CL) microporous nanofibrous membranes were further fabricated for the fluorescence enhancement detection of Cr3+ in aqueous solution. It was found that the fluorescence intensity of the 1,4-DHAQ-doped CNTs@CL nanofibrous membranes linearly decreased with Cu2+ concentration in the range of 0-2.2 x 10(-8) M, while that of the 1,4-DHAQ/Cu2+ co-doped CNTs@CL nanofibrous membranes linearly increased with Cr3+ concentration in the range of 0-2.4 x 10(-8) M. The excellent fluorescence sensing properties of the 1,4-DHAQ-doped CNTs@CL and 1,4-DHAQ/Cu2+ co-doped CNTs@CL nanofibrous membranes for Cu2+ and Cr3+ were further demonstrated by using polluted lake waters, proving their potential applications in environmental monitoring areas. The design concept mentioned in this work might also open a door to the design of other effective fluorescence probes with high sensitivity.
机译:通过静电素和随后的脱乙酰化在这项工作中制备了1,4-二羟基蒽醌(1,4-DHAQ,荧光团)掺杂碳纳米管@纤维素(1,4-DHAQ掺杂CNTS @ Cl)纳米纤维膜。它们已成功应用于水溶液中Cu2 +的高敏感性检测。通过将CNT掺入纤维素中,增强了纳米纤维膜的每单位质量(S / M)比的表面积。此外,CNT的优异金属离子吸附能力改善了传感材料的灵敏度。上述两点两点显着提高了预期的荧光感测的较低检测限。作为Cu 2 +丙烷的所得副产物,通过额外加入溶液,1,4-DHAQ和Cu2 +共掺杂CNTs @ Cl(表示为1,4 -DHAQ / Cu2 +共掺杂CNTS @ Cl)微孔纳米纤维膜进一步制备用于水溶液中Cr3 +的荧光增强检测。发现1,4-DHAQ掺杂CNTS的荧光强度在0-2.2×10(-8)m的范围内,用Cu 2 +浓度线性地降低,而1,4-Dhaq / Cu2 +共掺杂CNT @ Cl纳米纤维膜随CR3 +浓度线性增加,在0-2.4×10(-8)M的范围内。1,4-DHAQ掺杂CNTS @ Cl和1的优异荧光感测性能,通过使用污染的湖水进一步证明了Cu2 +和Cr3 +的4-DHAQ / Cu2 +共掺杂CNTS @ Cl纳米纤维膜,证明了它们在环境监测区域中的潜在应用。这项工作中提到的设计概念也可能对具有高灵敏度的其他有效荧光探针的设计开门。

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  • 来源
    《Analytical methods》 |2017年第42期|共5页
  • 作者

    Gu Yao; Wang Meiling; Li Guizhen;

  • 作者单位

    Guangxi Zhuang Autonomous Reg Forestry Res Inst Nanning 530002 Peoples R China;

    Chinese Acad Sci Inst Solid State Phys Anhui Key Lab Nanomat &

    Nanostruct Key Lab Mat Phys Hefei 230031 Anhui Peoples R China;

    Guangxi Zhuang Autonomous Reg Forestry Res Inst Nanning 530002 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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