Synthesis, spectroscopic characterization and redox reactivity of the copper(II) salicylaldiminates containing sterically hindered 2,6-diphenylphenol
New bidentate N-(2,6-di-phenyl-1-hydroxyphenyl) salicylaldimines bearing X = H and 3,5-di-t-butyl substituents on the salicylaldehyde ring, L^sup x^H, and their copper(II) complexes, Cu(L^sup x^)^sub 2^, have been synthesized and characterized by i.r., u.v./vis., ^sup 1^H-n.m.r., ^sup 13^C-n.m.r., e...
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Veröffentlicht in: | Transition metal chemistry (Weinheim) 2003-11, Vol.28 (8), p.888 |
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creator | Kasumov, Veli T Köksal, Fevzi |
description | New bidentate N-(2,6-di-phenyl-1-hydroxyphenyl) salicylaldimines bearing X = H and 3,5-di-t-butyl substituents on the salicylaldehyde ring, L^sup x^H, and their copper(II) complexes, Cu(L^sup x^)^sub 2^, have been synthesized and characterized by i.r., u.v./vis., ^sup 1^H-n.m.r., ^sup 13^C-n.m.r., e.s.r. spectroscopy and magnetic susceptibility measurements. E.s.r. study has shown that chemical oxidation of Cu(L^sup x^)^sub 2^ with PbO^sub 2^ produces ligand-centered Cu^sup II^-phenoxyl radical species. The complexes are easily reduced with PPh^sub 3^ via intramolecular electron transfer from ligand to copper(II) to give unstable radical intermediates, which in time are converted to another stable secondary radical species. The analysis of e.s.r. spectra of Cu(L^sup x^)^sub 2^ and generated radical intermediates are presented.[PUBLICATION ABSTRACT] |
doi_str_mv | 10.1023/A:1026316032127 |
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E.s.r. study has shown that chemical oxidation of Cu(L^sup x^)^sub 2^ with PbO^sub 2^ produces ligand-centered Cu^sup II^-phenoxyl radical species. The complexes are easily reduced with PPh^sub 3^ via intramolecular electron transfer from ligand to copper(II) to give unstable radical intermediates, which in time are converted to another stable secondary radical species. 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E.s.r. study has shown that chemical oxidation of Cu(L^sup x^)^sub 2^ with PbO^sub 2^ produces ligand-centered Cu^sup II^-phenoxyl radical species. The complexes are easily reduced with PPh^sub 3^ via intramolecular electron transfer from ligand to copper(II) to give unstable radical intermediates, which in time are converted to another stable secondary radical species. 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E.s.r. study has shown that chemical oxidation of Cu(L^sup x^)^sub 2^ with PbO^sub 2^ produces ligand-centered Cu^sup II^-phenoxyl radical species. The complexes are easily reduced with PPh^sub 3^ via intramolecular electron transfer from ligand to copper(II) to give unstable radical intermediates, which in time are converted to another stable secondary radical species. The analysis of e.s.r. spectra of Cu(L^sup x^)^sub 2^ and generated radical intermediates are presented.[PUBLICATION ABSTRACT]</abstract><cop>Dordrecht</cop><pub>Springer Nature B.V</pub><doi>10.1023/A:1026316032127</doi></addata></record> |
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title | Synthesis, spectroscopic characterization and redox reactivity of the copper(II) salicylaldiminates containing sterically hindered 2,6-diphenylphenol |
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