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Synthesis, electrochemistry, thin-layer UV-vis and fluorescence spectroelectrochemistry of a new salicylaldimine ligand and its copper complex

机译:水杨醛亚胺配体及其铜配合物的合成,电化学,薄层紫外可见光谱和荧光光谱电化学

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摘要

The new asymmetric, fluorescent Schiff-base ligand, N-(pyrene)-salicylaldimine (L), and its copper complex having an ONNO donor set, [Cu(L) 2 ], were synthesized and characterized using elemental analysis, IR, UV-vis, 1H and 13C-NMR spectroscopies. Their electrochemical and spectroelectrochemical behaviors were investigated in a detail by using cyclic voltammetry (CV), square wave voltammetry (SWV), in-situ UV-vis, and fluorescence spectroelectrochemistry. The formation of the complex was monitored by the in-situ fluorescence technique based on the quenching of the fluorescence-probe ligand. Electrochemical studies showed that L exhibits a single irreversible reduction process. However, the SWV indicated that this process was not totally irreversible in the time scale of the measurement. The cathodic peak potential of the reduction process occurred at E pc = ?1.35 V vs Ag/AgCl (scan rate: 0.025 Vs?1). On the other hand, [Cu(L) 2 ] showed one quasi-reversible one-electron reduction process in the scan rates of 0.025–0.50 Vs?1, which was assigned to metal-based one-electron process; [Cu(2+)(L)2] + e? → [Cu(+)(L)2]?. The value of half-wave potential (E 1/2) of the reduction process was ?0.54 V vs Ag/AgCl (scan rate: 0.025 Vs?1). The time-resolved spectra showed, when the potential (E app = ?1.60 V) was applied in a thin-layer cell, that the main and shoulder bands of (L) at 385, 336, and 407 nm almost disappeared and a new band at 443 nm with a shoulder formed during the reduction process. No change was observed on the final spectrum of the totally reduced ligand for long period under nitrogen atmosphere, which indicated that the singly reduced species remained stable and was not accompanied by a chemical reaction in the time scale of the spectroelectrochemical measurement. The spectral changes during the reduction process of [Cu(L) 2 ] confirmed the metal-centered reduction process. The fluorescence intensity of L decreased during the reduction process in the thin-layer cell, as result of the perturbation of the conjugated system of the reduced species.
机译:合成了新的不对称荧光席夫碱配体N-(py)-水杨醛亚胺(L)及其具有ONNO供体的铜配合物[Cu(L)2 ],并使用元素分析进行​​了表征,红外,紫外-可见,1 H和13 C-NMR光谱。通过循环伏安法(CV),方波伏安法(SWV),原位紫外可见光谱和荧光光谱电化学对它们的电化学和光谱电化学行为进行了详细研究。通过基于荧光探针配体的淬灭的原位荧光技术监测复合物的形成。电化学研究表明,L表现出单一的不可逆还原过程。但是,SWV表示此过程在测量的时间范围内并非完全不可逆。还原过程的阴极峰电位出现在E pc = Ag / AgCl的?1.35 V处(扫描速率:0.025 Vs?1 )。另一方面,[Cu(L)2 ]在0.025–0.50 Vs?1 的扫描速率下显示了一个准可逆的单电子还原过程,该过程被分配给金属基的电子工艺; [Cu(2 +)(L)2 ] + e?→[Cu(+)(L)2 ]?。还原过程的半波电位(E 1/2 )相对于Ag / AgCl为0.54 V(扫描速率:0.025 Vs?1 )。时间分辨光谱显示,当在薄层电池中施加电势(E app =?1.60 V)时,(L)在385、336和407 nm处的主带和肩带几乎消失,在还原过程中在443 nm处形成新的带并形成了肩带。在氮气氛下,长时间内完全还原的配体的最终光谱没有观察到变化,这表明在光谱电化学测量的时间范围内,单个还原的物种保持稳定并且不伴随化学反应。 [Cu(L)2 ]还原过程中的光谱变化证实了以金属为中心的还原过程。 L的荧光强度在还原过程中在薄层细胞中降低,这是由于还原物种的共轭体系的扰动所致。

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  • 来源
    《Transition Metal Chemistry》 |2008年第2期|259-265|共7页
  • 作者

    Ismail Yilmaz;

  • 作者单位

    Department of Chemistry Technical University of Istanbul 34469 Maslak Istanbul Turkey;

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  • 正文语种 eng
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