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Infrared absorbing croconaine dyes: Synthesis and metal ion binding properties

机译:红外吸收型可可宁染料:合成和金属离子结合性能

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[GRAPHICS] Quinaldine-based croconaine dyes synthesized by the condensation reaction between croconic acid and the respective quinaldinium salts are described. These dyes exhibit absorption maximum in the infrared region (840-870 nm) with high molar extinction coefficients (1-5 x 10(5) M-1 cm(-1)) and have very low fluorescence quantum yields. Upon binding to divalent metal ions, these dyes were found to form complexes with a 2:1 stoichiometry having high association constants of the order of 10(11)-10(14) M-2, while the monovalent metal ions showed negligible affinity. The binding of the croconaine dye 3d with divalent metal ions especially Zn2+, Pb2+, and Cd2+ led to significant chelation-enhanced fluorescence emission. The broadening of the aromatic signals, vinylic and N-methyl protons and the negligible changes at the aliphatic region of the dye 3d in the H-1 NMR spectrum in the presence of Zn2+, indicate that the binding occurs at the carbonyl groups of the croconyl ring. The shift in the croconyl carbonyl stretching frequency in the [3d-Zn2+] complex analyzed through FT-IR analysis further confirms the involvement of two electron-rich carbonyl groups of the croconyl moiety in the complexation. These results demonstrate that the binding of the divalent metal ions at the carbonyl oxygens of these infrared absorbing dyes can be favorably utilized for the development of potential sensors for the detection of metal ions and further can be exploited as sensitizers for photodynamic therapeutic applications.
机译:[图形]描述了通过可可酸和相应的奎纳啶鎓盐之间的缩合反应合成的基于奎奴定的可可碱染料。这些染料在红外区(840-870 nm)处显示最大吸收,具有高的摩尔消光系数(1-5 x 10(5)M-1 cm(-1)),并且荧光量子产率非常低。与二价金属离子结合后,发现这些染料形成化学计量比为2:1的络合物,具有10(11)-10(14)M-2数量级的高缔合常数,而一价金属离子的亲和力却可以忽略不计。藏红花染料3d与二价金属离子(尤其是Zn2 +,Pb2 +和Cd2 +)的结合导致显着的螯合增强荧光发射。在存在Zn2 +的情况下,H-1 NMR光谱中芳香族信号,乙烯基和N-甲基质子的增宽以及染料3d的脂族区域的变化可忽略不计,表明该结合发生在巴豆基的羰基上环。通过FT-IR分析分析的[3d-Zn2 +]络合物中的烯丙基羰基拉伸频率的变化进一步证实了烯丙基中两个电子富集的羰基参与络合。这些结果表明,这些红外吸收染料的羰基氧上的二价金属离子的结合可以有利地用于开发检测金属离子的潜在传感器,并且还可以用作光动力治疗应用的敏化剂。

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