Rigid ferrocenophane and its metal complexes with transition and alkaline-earth metal ions

被引:3
|
作者
Cui, Xiuling [1 ]
Delgado, Rita [1 ,2 ]
Costa, Judite [3 ]
Drew, Michael G. B. [4 ]
Costa, Paulo J. [5 ]
Felix, Vitor [5 ]
机构
[1] Univ Nova Lisboa, Inst Tecnol Quim & Biol, P-2780157 Oeiras, Portugal
[2] Inst Super Tecn, Dept Quim & Bioquim, P-1049001 Lisbon, Portugal
[3] Far Farm Lisboa, CBT iMed UL, P-1649003 Lisbon, Portugal
[4] Univ Reading, Sch Chem, Reading RG6 6AD, Berks, England
[5] Univ Aveiro, Dept Quim, CICECO & Seccao Autonoma Ciencias Saude, P-3810193 Aveiro, Portugal
关键词
Ferrocenophane; Ferrocene; Sensors; DFT calculations; Crown compounds; EFFECTIVE CORE POTENTIALS; MOLECULAR CALCULATIONS; POLARIZATION FUNCTIONS; ELECTRONIC-STRUCTURE; CRYSTAL-STRUCTURE; BASIS-SETS; REDOX; LIGAND; MG2+; TETRAAZAMACROCYCLE;
D O I
10.1016/j.poly.2010.02.015
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The rigid [6]ferrocenophane, L-1, was synthesised by condensation of 1,1'-ferrocene dicarbaldehyde with trans-1,2-diaminocyclohexane in high dilution at r.t. followed by reduction. When other experimental conditions were employed, the [6,6,6]ferrocenephane (L-2) was also obtained. Both compounds were characterised by single crystal X-ray crystallography. The protonation of L-1 and its metal complexation were evaluated by the effect on the electron-transfer process of the ferrocene (fc) unit of L-1 using cyclic voltammetry (CV) and square wave voltammetry (SWV) in anhydrous CH3CN solution and in 0.1 M (Bu4NPF6)-Bu-n as the supporting electrolyte. The electrochemical process of L-1 between 300 and 900 mV is complicated by amine oxidation. On the other hand, an anodic shift from the fc/fc(+) wave of L-1 of 249, 225, 81 and 61 mV was observed by formation of Zn2+, Ni2+, Pd2+ and Cu2+ complexes, respectively. Whereas Mg2+ and Ca2+ only have with L-1 weak interactions and they promote the acid-base equilibrium of L-1. This reveals that L-1 is an interesting molecular redox sensor for detection of Zn2+ and Ni2+, although the kinetics of the Zn2+ complex formation is much faster than that of the Ni2+ one. The X-ray crystal structure of [(PdLCl2)-Cl-1] was determined and showed a square-planar environment with Pd(II) and Fe(II) centres separated by 3.781(1) angstrom. The experimental anodic shifts were elucidated by DFT calculations on the [(MLCl2)-Cl-1] series and they are related to the nature of the HOMO of these complexes and a four-electron, two-orbital interaction. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1697 / 1705
页数:9
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