首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Highly selective thioalcohol modified phthalocyanine sensors for Ag(i) and Pd(ii) based on target induced J- and H-type aggregations: Synthesis, electrochemistry and peripheral metal ion binding studies
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Highly selective thioalcohol modified phthalocyanine sensors for Ag(i) and Pd(ii) based on target induced J- and H-type aggregations: Synthesis, electrochemistry and peripheral metal ion binding studies

机译:基于目标诱导的J型和H型聚集体的针对Ag(i)和Pd(ii)的高选择性硫醇修饰的酞菁传感器:合成,电化学和外围金属离子结合研究

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摘要

We have described highly selective 1(4),8(11),15(18),22(25)-(1- hydroxyhexan-3-ylthio)-phthalocyanine sensors, M{Pc[α-SCH(C _3H _7)(C _2H _5OH)] _4} (MPc(α-HHT) _4, where M = Zn(ii) (2), Cu(ii) (3) or Co(ii) (4) and HHT: -SCH(C _3H _7)(C _2H _5OH)). The formation of S-M-S {S = sulfur; M = Ag(i) or Pd(ii)} bonds on the periphery in the case of Ag(i) and Pd(ii) metal ions induces H- or J-aggregation, respectively, which results in significant changes in the absorption of the B- and, in particular, the Q-band. The binding ratios of Ag(i) to the periphery of 2 and 3 were found to be ca. 2:1 and 3:2, respectively. On the other hand, the binding ratios of Pd(ii) to the periphery of the same compounds were found to be 3:1 and 4:1. The fluorescence of 2 exhibited distinct changes in response to treatment with Ag(i) and Pd(ii) ions in solution. The fluorescence spectra emission intensity of 2 was quenched upon titration with Ag(i) and Pd(ii) and a new emission maximum was observed upon titration with Pd(ii). FTIR, ~1H-NMR, ~(13)C-NMR, UV-vis, MALDI-TOF MS and elemental analysis data were used to characterize the novel compounds. Transmission electron microscopy (TEM) and field-emission scanning electron microscopy (FE-SEM) were also used as complementary techniques to investigate the morphology and to image the interfacial aggregates of 2. The redox behaviours of the complexes were examined by voltammetry and in situ spectroelectrochemistry on Pt in a nonaqueous medium.
机译:我们已经描述了高选择性1(4),8(11),15(18),22(25)-(1-羟基己-3-基硫基)-酞菁传感器,M {Pc [α-SCH(C _3H _7) (C _2H _5OH)] _4}(MPc(α-HHT)_4,其中M = Zn(ii)(2),Cu(ii)(3)或Co(ii)(4)和HHT:-SCH(C _3H _7)(C _2H _5OH))。 S-M-S {S =硫;在Ag(i)和Pd(ii)的情况下,M = Ag(i)或Pd(ii)}在外围的键分别导致H或J聚集,从而导致对H的吸收发生显着变化。 B波段,尤其是Q波段。发现Ag(i)对2和3的外围的结合比约为1。 2:1和3:2。另一方面,发现Pd(ii)与相同化合物的外围的结合比为3∶1和4∶1。溶液中的Ag(i)和Pd(ii)离子处理后,2的荧光表现出明显的变化。用Ag(i)和Pd(ii)滴定淬灭后,荧光光谱的发射强度为2,用Pd(ii)滴定观察到新的发射最大值。 FTIR,〜1H-NMR,〜(13)C-NMR,UV-vis,MALDI-TOF MS和元素分析数据用于表征新型化合物。还使用透射电子显微镜(TEM)和场发射扫描电子显微镜(FE-SEM)作为补充技术来研究2的形态和成像界面聚集体。通过伏安法和原位检查复合物的氧化还原行为。非水介质中铂上的光谱电化学。

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