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Author's Improvement in Titanium Complexes Bearing Schiff Base Ligands in the Ring-Opening Polymerization of L-Lactide: A Dinuclear System with Hydrazine-Bridging Schiff Base Ligands
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Author's Structure and nitrite reduction reactivity study of bio-inspired copper(i)-nitro complexes in steric and electronic considerations of tridentate nitrogen ligands.
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characterizationofanewcopper1nitritocomplexthatevolvesnitricoxide
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Characterization of a new copper(I)-nitrito complex that evolves nitric oxide.
‡9
1
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improvementintitaniumcomplexesbearingschiffbaseligandsintheringopeningpolymerizationof50lactideadinuclearsystemwithhydrazinebridgingschiffbaseligands
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Improvement in Titanium Complexes Bearing Schiff Base Ligands in the Ring-Opening Polymerization of L-Lactide: A Dinuclear System with Hydrazine-Bridging Schiff Base Ligands
‡9
1
‡a
copper1nitrocomplexwithananionicligandasyntheticmodelforthecoppernitritereductaseactivesite
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Copper(I) nitro complex with an anionic [HB(3,5-Me2Pz)3]− ligand: a synthetic model for the copper nitrite reductase active site
‡9
1
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structureandnitritereductionreactivitystudyofbioinspiredcopper1nitrocomplexesinstericandelectronicconsiderationsoftridentatenitrogenligands
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Structure and nitrite reduction reactivity study of bio-inspired copper(i)-nitro complexes in steric and electronic considerations of tridentate nitrogen ligands.
‡9
1
‡a
structureandnitritereductionreactivitystudyofbioinspiredcopper
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Structure and nitrite reduction reactivity study of bio-inspired copper
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1