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Demetalation of Silver(III) Corrolates.

Authors :
Stefanelli, Manuela
Shen, Jing
Zhu, Weihua
Mastroianni, Marco
Mandoj, Federica
Nardis, Sara
Ou, Zhongping
Kadish, Karl M.
Fronczek, Frank R.
Smith, Kevin M.
Paolesse, Roberto
Source :
Inorganic Chemistry. 7/13/2009, Vol. 48 Issue 14, p6879-6887. 9p.
Publication Year :
2009

Abstract

Several procedures for the demetalation of silver(III) corrolates have been tested. Acidic conditions induce removal of the silver ion but they can also promote concomitant oxidation of the corrole nucleus to an isocorrole species, the degree of which will depend upon the specific acidic media. This oxidation cannot be completely avoided by addition of hydrazine, particularly in the case of 3-NO2 substituted complexes which are quantitatively converted into the corresponding 3-NO2, 5-hydroxy isocorroles upon silver ion removal. Several β-nitro isocorrole products were isolated, and one was structurally characterized. Electrochemical and chemical reductive methods for silver(III) corrolates demetalation were then tested with the aim to avoid the formation of isocorroles. While reaction with sodium borohydride was shown to be quite effective to demetalate unsubstituted silver corrolates this was not the case for the β-nitro derivatives where the peripheral nitro group is reduced by borohydride giving the corresponding 3-amino free base corrole species. For the β-nitro corrole silver complexes, a successful approach was obtained using DBU/THF solutions which afforded the 3-NO2 corrole free-base compound as a single reaction product in good yield. These conditions were also effective for unsubstituted corroles although longer reaction times were necessary in this case. To study in greater detail the corrole demetalation behavior, selected Ag(III) derivatives were characterized by cyclic voltammetry in pyridine, and the demetalation products spectrally characterized after controlled potential reduction in a thin-layer spectroelectrochemical cell. Electrochemical and chemical reductive methods are effective for silver(III) corrolate demetalations, avoiding both a decomposition of the starting complex and the formation of isocorrole species, observed in acidic conditions. For β-nitro corrole silver complexes the successful approach is obtained using DBU/THF solutions because the corresponding 3-amino free base corrole species is obtained in the reductive conditions. Selected Ag(III) derivatives have been characterized by cyclic voltammetry in pyridine, and the demetalation products spectrally characterized. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00201669
Volume :
48
Issue :
14
Database :
Academic Search Index
Journal :
Inorganic Chemistry
Publication Type :
Academic Journal
Accession number :
144988115
Full Text :
https://doi.org/10.1021/ic900859a