National Centre for Ultrafast Processes, University of Madras, Taramani Campus, Chennai, India.
J Phys Chem A. 2011 Dec 22;115(50):14292-9. doi: 10.1021/jp209061f. Epub 2011 Nov 28.
Ratiometric sensors for the detection of metal ions have gained increasing attention due to its self-calibration tendency for the environmental effects. In this context, we have synthesized and characterized a dual emitting ratiometric Zn(2+) probe (1) having acridinedione as a fluorophore and N,N-bis(2-pyridylmethyl)amine (BPA) as a receptor unit. Existence of two different conformation of the molecule with photoinduced electron transfer (PET) from amine moiety to the acridinedione fluorophore leads to dual emission, namely locally excited (425 nm) and anomalous charge transfer emission (560 nm) in aprotic solvents. In the presence of one equivalent of Zn(2+), a 15-fold fluorescence enhancement in the locally excited state together with the quenching of charge transfer emission is observed. The intensity changes at the two emission peaks allow a ratiometric detection of Zn(2+) under PET signaling mechanism. The utilization of PET process for the ratiometric fluorescence change will further signify the importance of PET mechanism in sensing action. Addition of Zn(2+) to 1 in acetonitrile/water mixtures shows a single emission peak with fluorescence enhancement.
由于其对环境影响的自校准趋势,比率型传感器在金属离子检测方面受到了越来越多的关注。在这种情况下,我们合成并表征了一种双发射比率型 Zn(2+)探针(1),它具有吖啶二酮作为荧光团和 N,N-双(2-吡啶基甲基)胺(BPA)作为受体单元。分子存在两种不同的构象,通过胺部分到吖啶二酮荧光团的光诱导电子转移(PET)导致在非质子溶剂中产生双发射,即局域激发(425nm)和异常电荷转移发射(560nm)。在存在一个当量的 Zn(2+)的情况下,在局域激发态下观察到 15 倍的荧光增强,同时电荷转移发射被猝灭。两个发射峰的强度变化允许在 PET 信号机制下进行 Zn(2+)的比率检测。比率荧光变化中 PET 过程的利用将进一步表明 PET 机制在传感作用中的重要性。在乙腈/水混合物中向 1 中添加 Zn(2+)显示出单一的发射峰,同时荧光增强。