Aluminum Complexes with Redox-Active Formazanate Ligand: Synthesis, Characterization, and Reduction Chemistry
Author(s) -
Ranajit Mondol,
Edwin Otten
Publication year - 2019
Publication title -
inorganic chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.348
H-Index - 233
eISSN - 1520-510X
pISSN - 0020-1669
DOI - 10.1021/acs.inorgchem.9b00553
Subject(s) - chemistry , redox , ligand (biochemistry) , cyclic voltammetry , non innocent ligand , combinatorial chemistry , iodide , yield (engineering) , inorganic chemistry , shewanella oneidensis , electrochemistry , bacteria , genetics , metallurgy , biology , receptor , materials science , electrode , biochemistry
The synthesis of aluminum complexes with redox-active formazanate ligands is described. Salt metathesis using AlCl 3 was shown to form a five-coordinate complex with two formazanate ligands, whereas organometallic aluminum starting materials yield tetrahedral mono(formazanate) aluminum compounds. The aluminum diphenyl derivative was successfully converted to the iodide complex (formazanate)AlI 2 , and a comparison of spectroscopic/structural data for these new complexes is provided. Characterization by cyclic voltammetry is supplemented by chemical reduction to demonstrate that ligand-based redox reactions are accessible in these compounds. The possibility to obtain a formazanate aluminum(I) carbenoid species by two-electron reduction was examined by experimental and computational studies, which highlight the potential impact of the nitrogen-rich formazanate ligand on the electronic structure of compounds with this ligand.
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