首页> 外文期刊>Chemistry: A European journal >Ratiometric Hg~(2+)/Ag~+ Probes with Orange Red-White-Blue Fluorescence Response Constructed by Integrating Vibration-Induced Emission with an Aggregation-Induced Emission Motif
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Ratiometric Hg~(2+)/Ag~+ Probes with Orange Red-White-Blue Fluorescence Response Constructed by Integrating Vibration-Induced Emission with an Aggregation-Induced Emission Motif

机译:通过将振动诱导的发射与聚集诱导的发射基质集成

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摘要

Two novel ratiometric fluorometric probes 6a and 6b have been designed and synthesized for the detection of Hg~(2+) and Ag~+, respectively. Each of these probes is comprised of a 9,14-diphenyl-9,14-dihydrodibenzo[a,c]phenazine (DPAC) skeleton, α tetraphenylethylene (TPE) unit, and two thymine/adenine groups. In this proof-of-concept work, the DPAC unit featuring vibration-induced emission (VIE) characteristics serves as a dual-emission chromogen, whereas the TPE moiety, which is noted for its aggregation-induced emission (AIE) properties, functions mainly as a signal amplifier. The coordination between the thymine/adenine groups and Hg~(2+)/A~(g+) leads to the formation of aggregates, which restricts the intramolecular vibrations of DPAC and the intramolecular rotations of TPE, activating the AIE effect of TPE and resulting in the bent form of DPAC. Accordingly, the overall fluorescence changed from moderate orange-red (Iorange-red) to intense blue light (Iblue) passing through the white-light region, concurrently with an enhancement of fluorescence at 475 nm and a dramatic increase in the ratio of Iblue/Iorange-red. Furthermore, the superb sensitivity of 6a/6b towards Hg~(2+)/A~(g+) has been demonstrated by the detection limit, which is as low as 6.1 nm and 0.1 mm, respectively. Both of these values are below the maximum concentration in drinking water permitted by the U.S. Environmental Protection Agency, demonstrating their great potential to be applied for real-world metal-ion sensing.
机译:已经设计并合成了两种新型比例荧光探针6a和6b以分别检测Hg〜(2+)和Ag〜+。这些探针中的每一个由9,14-二苯基-9,14-二氢苯并二苯并二苯肼[A,C]苯脲(DPAC)骨架,α四苯基乙烯(TPE)单元和两个胸腺嘧啶/腺嘌呤组组成。在该概念上的验证工作中,具有振动诱导的发射(VIE)特性的DPAC单元用作双发射色原,而TPE部分,其用于其聚集诱导的发射(AIE)性质,主要是作为信号放大器。胸腺嘧啶/腺嘌呤基团和Hg〜(2 +)/ a〜(g +)之间的配位导致聚集体的形成,其限制了DPAC的分子内振动和TPE的分子内振动,激活TPE的AIE效应并产生在DPAC的弯曲形式。因此,通过在475nm处的荧光的增强和Iblue /的比例的增强,从中等橙红色(IORANGE-RED)变为穿过白光区域的强烈蓝光(Iblue)的整体荧光。 iorange-red。此外,通过检测极限证明了6a / 6b朝向Hg〜(2 +)/ a〜(g +)的高度敏感性,其分别低至6.1nm和0.1mm。这两个价值观低于美国环境保护局允许的饮用水中的最大浓度,证明其适用于现实世界金属离子传感的巨大潜力。

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  • 来源
    《Chemistry: A European journal》 |2017年第39期|共8页
  • 作者单位

    Key Laboratory for Advanced Materials and Institute of Fine Chemicals School of Chemistry &

    Molecular Engineering East China University of Science &

    Technology Shanghai 200237 (P. R. China);

    Key Laboratory for Advanced Materials and Institute of Fine Chemicals School of Chemistry &

    Molecular Engineering East China University of Science &

    Technology Shanghai 200237 (P. R. China);

    Key Laboratory for Advanced Materials and Institute of Fine Chemicals School of Chemistry &

    Molecular Engineering East China University of Science &

    Technology Shanghai 200237 (P. R. China);

    Key Laboratory for Advanced Materials and Institute of Fine Chemicals School of Chemistry &

    Molecular Engineering East China University of Science &

    Technology Shanghai 200237 (P. R. China);

    Key Laboratory for Advanced Materials and Institute of Fine Chemicals School of Chemistry &

    Molecular Engineering East China University of Science &

    Technology Shanghai 200237 (P. R. China);

    Key Laboratory for Advanced Materials and Institute of Fine Chemicals School of Chemistry &

    Molecular Engineering East China University of Science &

    Technology Shanghai 200237 (P. R. China);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用化学;
  • 关键词

    aggregation-induced emission (AIE); mercury ion; ratiometric fluorometric probes; silver ion; vibration-induced emission (VIE);

    机译:聚集诱导的发射(AIE);汞离子;比例荧光探针;银离子;振动诱导的发射(VIE);

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