Electrochemical synthesis of neutral divalent transition-metal complexes with tetradentate thioether–benzimidazole-containing ligands
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/1990/DT/DT9900003643
Reference20 articles.
1. Synthesis, structure, and spectroscopic properties of copper(II) compounds containing nitrogen–sulphur donor ligands; the crystal and molecular structure of aqua[1,7-bis(N-methylbenzimidazol-2′-yl)-2,6-dithiaheptane]copper(II) perchlorate
2. Photo-induced reduction of Cu(II)-benzimidazolylthioether chelates. The formation of 1,6-bis(N-methylbenzimidazol-2-yl)-2,5-dithiahexane copper(I) perchlorate from the corresponding copper(II) compound by photo-induced reduction in dimethylformamide
3. Copper(I) and copper(II) chelates containing lmidazole and thioether groups; synthesis of the ligand 1,2-bis(benzimidazol-2′-ylmethylthio)-benzene (bbtb) and the X-ray crystal structure at –52 °C of [Cu-(bbtb)(H2O)][ClO4]2·5EtOH
4. An unusual dinuclear cobalt dioxygen complex with a tetradentate thioether imidazole containing ligand. Structure of [Co2(bidhx)2(O2)(OH)](NO3)3
5. Transition-metal coordination compounds of a chelating imidazole-thioether ligand. The molecular structure of diisothiocyanato[1,6-bis(5-methyl-4-imidazolyl)-2,5-dithiahexane]nickel(II)
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1. The use of sacrificial anodes for the electrochemical synthesis of metallic complexes;Coordination Chemistry Reviews;2015-11
2. ChemInform Abstract: Electrochemical Synthesis of Neutral Divalent Transition-Metal Complexes with Tetradentate Thioether-Benzimidazole-Containing Ligands.;ChemInform;2010-08-23
3. Copper‐Azide‐Thioarylazoimidazoles – Structure, Spectra, Redox Properties, Magnetism and Theoretical Interpretation;European Journal of Inorganic Chemistry;2010-01
4. DIRECT ELECTROSYNTHESIS OF METAL COMPLEXES: STATE OF THE ART;Journal of Coordination Chemistry;1999-09
5. Direct Electrosynthesis of Metal Complexes;Direct Synthesis of Coordination and Organometallic Compounds;1999
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