Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
Dalton Trans. 2019 Feb 5;48(6):2108-2117. doi: 10.1039/c8dt04016h.
A water-soluble dilithium salt BODIPY derivative (LiBDP) with appended dicarboxylate pseudo-crown ether [NO4] coordinating sites has been designed, synthesized and characterized successfully for the selective and sensitive recognition of Cd2+ in aqueous media. The chemosensor exhibits a remarkable increase in fluorescence intensity as well as a distinct color change upon the addition of Cd2+ over other environmentally and biologically relevant metal ions in H2O. The fluorometric response of LiBDP is attributed to the metal chelation-enhanced fluorescence (MCHEF) effect which has been confirmed by a strong association constant of 2.57 ± 1.06 × 105 M-1 and Job's plot, indicating 1 : 1 binding stoichiometry between LiBDP and Cd2+. Frontier molecular orbital analysis (obtained from DFT studies) also illustrates the turn-on fluorescence of the probe by blocking photoinduced electron transfer (PET) after coordination to Cd2+. The probe can detect Cd2+ in a competitive environment up to a submicromolar level in a biologically significant pH range. The sensor is proved to be reversible and reusable by the alternative addition of Cd2+ followed by S2-. The OFF/ON/OFF sensing behavior is utilized to construct an INHIBIT molecular logic gate based on the two inputs of Cd2+ and S2- and a fluorescence intensity at 512 nm as an output. The test paper experiment demonstrates the practical utility of LiBDP to monitor Cd2+ in an aqueous sample. Finally, the sensing probe was utilized to monitor Cd2+ in living cells.
一种水溶性双锂盐 BODIPY 衍生物(LiBDP),带有附加的二羧酸假冠醚 [NO4] 配位位点,已被成功设计、合成和表征,用于在水介质中选择性和灵敏地识别 Cd2+。该化学传感器在加入 Cd2+后,其荧光强度显著增加,并且颜色明显变化,而其他环境和生物相关金属离子则没有这种变化。LiBDP 的荧光响应归因于金属螯合增强荧光(MCHEF)效应,这已通过强结合常数 2.57 ± 1.06 × 105 M-1 和 Job 图得到证实,表明 LiBDP 和 Cd2+之间存在 1:1 的结合计量关系。前沿分子轨道分析(从 DFT 研究中获得)也说明了探针通过与 Cd2+配位后阻断光诱导电子转移(PET)而开启荧光。该探针可以在具有生物学意义的 pH 范围内,在竞争环境中检测低至亚微摩尔级别的 Cd2+。传感器通过交替加入 Cd2+和 S2-,并以 512nm 的荧光强度作为输出,被证明是可重复使用和可重复使用的。OFF/ON/OFF 传感行为被用于构建基于 Cd2+和 S2-两个输入以及 512nm 处的荧光强度作为输出的 INHIBIT 分子逻辑门。试纸实验证明了 LiBDP 在监测水样中的 Cd2+方面的实际应用。最后,该传感探针被用于监测活细胞中的 Cd2+。