{"id":{"repo_id":"uvic","oai_identifier":"oai:dspace.library.uvic.ca:1828/9637"},"canonical_url":"https://search.dev.ndltd.org/etd/uvic/oai:dspace.library.uvic.ca:1828/9637","repository":{"repo_id":"uvic","name":"University of Victoria (Canada)","base_url":"https://dspace.library.uvic.ca/server/oai/request"},"display":{"title":"Synthesis of novel pendant arm macrocyclic ligands as potential models for enterobactin","abstract":"A series of pendant arm tris-catecholate macrocyclic ligands were synthesized. The first, based on 1,4,7- triaminopropyl-1, 4, 7-triazacyclononane, was prepared via condensation with 2,3-dimethoxybenzoyl chloride. The deprotection of the catechol moieties was achieved with boron tribromide in 80% yields. The ferric complexes were characterized by electronic absorption spectroscopy. The second series of ligands described are based on the pendant arm macrocyclic ligand, 1, 4, 7-triaminoethyl-1, 4, 7- triazacyclononane. New routes to the preparation of this ligand were investigated; the best approach used chloroacetyl chloride as the reagent in functionalizing the nitrogen atoms of the triazacyclononane ring. The ligands, 1, 4, 7-tris-((2, 3- dihydroxyphenethyl) aminoethyl)-1, 4, 7-triazacyclononane (34) and 1, 4, 7-tris-((2, 3-dihydroxybenzyl)aminoethyl)-1, 4, 7- triazacyclononane (36) were prepared through a series of acid chloride condensation reactions, followed by reduction of the amides with diborane. The mononuclear ferric complexes of compounds 34 and 36 Were prepared and characterized by uv-visible spectroscopy. Mononuclear nickel, cobalt, and copper complexes of these ligands were also characterized by uv-visible spectroscopy. The binuclear complexes, Na[NiFe(34)] and Na[NiFe(36)], were prepared and characterized by electronic absorption spectroscopy. Tris-((2, 3-dihydroxybenzylamino)ethyl) amine, tris-((2, 3- dihydroxybenzoyl)aminoethyl)amine, and tris-((2 ,3-dihydroxyphenethyl)aminoethyl)amine were prepared by Schiff base condensation reactions, or acid chloride condensation of tris-(2-aminoethyl)amine and the appropriate catecholate moiety. The ferric complexes of these ligands were prepared and characterized by uv-visible spectroscopy. The A1(III) tris-((2,3-dihydroxybenzyl)aminoethyl)amine complex was examined by nmr spectroscopy. The Ni(II), Cu(Il) and Co(III) complexes were investigated by electronic absorption spectroscopy. The rates of base hydrolysis of [Co(tacn) (en)Cl]2+ (tacn=1, 4, 7-triazacyclononane), [Co(tacn) (amp)Cl]2+ (amp=2- aminomethylpyridine), [Co(tacn) (tn)Cl]2+, ufac-I- [Co(dien) (amp)Cl]2+ (dien=l,4,7-triazaheptane), ufac-Il- [Co (dien) (amp)]2+ and [Co (bicycloN5) C1]2+ (bicycloN5=1, 5, 8, 12, 15-pentaazabicyclo [10.5.2] nonadecane), were measured using stopped flow techniques. The base hydrolysis rates (kCH, M-1s-1; [ionic strength (M)]) are 9.66 [0.1], 154 [0.1], 40.6 [0.1], 334 [0.1], 762 [0.1], and 3X103 [1.0], respectively. The rate of [NCS-] anation of [Co (bicycloN5) (OH2)]3+, and the rates of [Br-] and [NCS-] anation of [Co (tacn) (en) (OH2)]3+ were measured as a function of pH. The pKa of the coordinated water molecules are 3.8 ([Co (bicycloN5) (OH2)]3+) and 6.5 ((Co(tacn) (en) (OH2)]3+) . The anation rates increase as the pH increases, indicating a base catalysed anation reaction through the deprotonation of the coordinated amine. In the case of the [Co(tacn) (en) (OH2)]3+ complex, the rate increases as the pH increases until the pH ~ 7, then there is no reaction after that point, suggesting some sort of blockage at the five-coordinate intermediate.","abstract_html":"A series of pendant arm tris-catecholate macrocyclic ligands were synthesized. The first, based on 1,4,7- triaminopropyl-1, 4, 7-triazacyclononane, was prepared via condensation with 2,3-dimethoxybenzoyl chloride. The deprotection of the catechol moieties was achieved with boron tribromide in 80% yields. The ferric complexes were characterized by electronic absorption spectroscopy. The second series of ligands described are based on the pendant arm macrocyclic ligand, 1, 4, 7-triaminoethyl-1, 4, 7- triazacyclononane. New routes to the preparation of this ligand were investigated; the best approach used chloroacetyl chloride as the reagent in functionalizing the nitrogen atoms of the triazacyclononane ring. The ligands, 1, 4, 7-tris-((2, 3- dihydroxyphenethyl) aminoethyl)-1, 4, 7-triazacyclononane (34) and 1, 4, 7-tris-((2, 3-dihydroxybenzyl)aminoethyl)-1, 4, 7- triazacyclononane (36) were prepared through a series of acid chloride condensation reactions, followed by reduction of the amides with diborane. The mononuclear ferric complexes of compounds 34 and 36 Were prepared and characterized by uv-visible spectroscopy. Mononuclear nickel, cobalt, and copper complexes of these ligands were also characterized by uv-visible spectroscopy. The binuclear complexes, Na[NiFe(34)] and Na[NiFe(36)], were prepared and characterized by electronic absorption spectroscopy. Tris-((2, 3-dihydroxybenzylamino)ethyl) amine, tris-((2, 3- dihydroxybenzoyl)aminoethyl)amine, and tris-((2 ,3-dihydroxyphenethyl)aminoethyl)amine were prepared by Schiff base condensation reactions, or acid chloride condensation of tris-(2-aminoethyl)amine and the appropriate catecholate moiety. The ferric complexes of these ligands were prepared and characterized by uv-visible spectroscopy. The A1(III) tris-((2,3-dihydroxybenzyl)aminoethyl)amine complex was examined by nmr spectroscopy. The Ni(II), Cu(Il) and Co(III) complexes were investigated by electronic absorption spectroscopy. The rates of base hydrolysis of [Co(tacn) (en)Cl]2+ (tacn=1, 4, 7-triazacyclononane), [Co(tacn) (amp)Cl]2+ (amp=2- aminomethylpyridine), [Co(tacn) (tn)Cl]2+, ufac-I- [Co(dien) (amp)Cl]2+ (dien=l,4,7-triazaheptane), ufac-Il- [Co (dien) (amp)]2+ and [Co (bicycloN5) C1]2+ (bicycloN5=1, 5, 8, 12, 15-pentaazabicyclo [10.5.2] nonadecane), were measured using stopped flow techniques. The base hydrolysis rates (kCH, M-1s-1; [ionic strength (M)]) are 9.66 [0.1], 154 [0.1], 40.6 [0.1], 334 [0.1], 762 [0.1], and 3X103 [1.0], respectively. The rate of [NCS-] anation of [Co (bicycloN5) (OH2)]3+, and the rates of [Br-] and [NCS-] anation of [Co (tacn) (en) (OH2)]3+ were measured as a function of pH. The pKa of the coordinated water molecules are 3.8 ([Co (bicycloN5) (OH2)]3+) and 6.5 ((Co(tacn) (en) (OH2)]3+) . The anation rates increase as the pH increases, indicating a base catalysed anation reaction through the deprotonation of the coordinated amine. In the case of the [Co(tacn) (en) (OH2)]3+ complex, the rate increases as the pH increases until the pH ~ 7, then there is no reaction after that point, suggesting some sort of blockage at the five-coordinate intermediate.","abstract_has_math":false,"creators":["Cameron, Beth"],"institution":null,"degree_name":null,"degree_level":null,"degree_discipline":null,"degree_department":null,"school":null,"contributors":[],"advisors":["McAuley, Alexander"],"committee_chairs":[],"committee_members":[],"year":2018,"date_issued":"2018-07-09","date_published":"2018-07-09","updated_at":"2026-07-24T05:52:40Z","subjects":["Macrocyclic compounds","Ligands"],"languages":["en","English"],"rights":["Available to the World Wide Web"],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"http://hdl.handle.net/1828/9637","outbound_label":"Handle","outbound_source":"dc:identifier.uri"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor.supervisor","label":"Supervisor","values":["McAuley, Alexander"]},{"key":"dc:creator","label":"Author","values":["Cameron, Beth"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date.accessioned","label":"Dc Date Accessioned","values":["2018-07-09T19:00:57Z"]},{"key":"dc:date.available","label":"Dc Date Available","values":["2018-07-09T19:00:57Z"]},{"key":"dc:date.issued","label":"Date","values":["2018-07-09"]},{"key":"dc:type","label":"Dc Type","values":["Thesis"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["Macrocyclic compounds","Ligands"]}]},{"id":"language_rights","label":"Language and Rights","entries":[{"key":"dc:language","label":"Dc Language","values":["English"]},{"key":"dc:language.iso","label":"Language (ISO)","values":["en"]},{"key":"dc:rights","label":"Dc Rights","values":["Available to the World Wide Web"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier.uri","label":"Identifier URI","values":["http://hdl.handle.net/1828/9637"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["A series of pendant arm tris-catecholate macrocyclic ligands were synthesized. The first, based on 1,4,7- triaminopropyl-1, 4, 7-triazacyclononane, was prepared via condensation with 2,3-dimethoxybenzoyl chloride. The deprotection of the catechol moieties was achieved with boron tribromide in 80% yields. The ferric complexes were characterized by electronic absorption spectroscopy. The second series of ligands described are based on the pendant arm macrocyclic ligand, 1, 4, 7-triaminoethyl-1, 4, 7- triazacyclononane. New routes to the preparation of this ligand were investigated; the best approach used chloroacetyl chloride as the reagent in functionalizing the nitrogen atoms of the triazacyclononane ring. The ligands, 1, 4, 7-tris-((2, 3- dihydroxyphenethyl) aminoethyl)-1, 4, 7-triazacyclononane (34) and 1, 4, 7-tris-((2, 3-dihydroxybenzyl)aminoethyl)-1, 4, 7- triazacyclononane (36) were prepared through a series of acid chloride condensation reactions, followed by reduction of the amides with diborane. The mononuclear ferric complexes of compounds 34 and 36 Were prepared and characterized by uv-visible spectroscopy. Mononuclear nickel, cobalt, and copper complexes of these ligands were also characterized by uv-visible spectroscopy. The binuclear complexes, Na[NiFe(34)] and Na[NiFe(36)], were prepared and characterized by electronic absorption spectroscopy. Tris-((2, 3-dihydroxybenzylamino)ethyl) amine, tris-((2, 3- dihydroxybenzoyl)aminoethyl)amine, and tris-((2 ,3-dihydroxyphenethyl)aminoethyl)amine were prepared by Schiff base condensation reactions, or acid chloride condensation of tris-(2-aminoethyl)amine and the appropriate catecholate moiety. The ferric complexes of these ligands were prepared and characterized by uv-visible spectroscopy. The A1(III) tris-((2,3-dihydroxybenzyl)aminoethyl)amine complex was examined by nmr spectroscopy. The Ni(II), Cu(Il) and Co(III) complexes were investigated by electronic absorption spectroscopy. The rates of base hydrolysis of [Co(tacn) (en)Cl]2+ (tacn=1, 4, 7-triazacyclononane), [Co(tacn) (amp)Cl]2+ (amp=2- aminomethylpyridine), [Co(tacn) (tn)Cl]2+, ufac-I- [Co(dien) (amp)Cl]2+ (dien=l,4,7-triazaheptane), ufac-Il- [Co (dien) (amp)]2+ and [Co (bicycloN5) C1]2+ (bicycloN5=1, 5, 8, 12, 15-pentaazabicyclo [10.5.2] nonadecane), were measured using stopped flow techniques. The base hydrolysis rates (kCH, M-1s-1; [ionic strength (M)]) are 9.66 [0.1], 154 [0.1], 40.6 [0.1], 334 [0.1], 762 [0.1], and 3X103 [1.0], respectively. The rate of [NCS-] anation of [Co (bicycloN5) (OH2)]3+, and the rates of [Br-] and [NCS-] anation of [Co (tacn) (en) (OH2)]3+ were measured as a function of pH. The pKa of the coordinated water molecules are 3.8 ([Co (bicycloN5) (OH2)]3+) and 6.5 ((Co(tacn) (en) (OH2)]3+) . The anation rates increase as the pH increases, indicating a base catalysed anation reaction through the deprotonation of the coordinated amine. In the case of the [Co(tacn) (en) (OH2)]3+ complex, the rate increases as the pH increases until the pH ~ 7, then there is no reaction after that point, suggesting some sort of blockage at the five-coordinate intermediate."]},{"key":"dc:title","label":"Title","values":["Synthesis of novel pendant arm macrocyclic ligands as potential models for enterobactin"]}]}],"canonical_facts":{"dc:contributor.supervisor":["McAuley, Alexander"],"dc:creator":["Cameron, Beth"],"dc:date.accessioned":["2018-07-09T19:00:57Z"],"dc:date.available":["2018-07-09T19:00:57Z"],"dc:date.issued":["2018-07-09"],"dc:description.abstract":["A series of pendant arm tris-catecholate macrocyclic ligands were synthesized. The first, based on 1,4,7- triaminopropyl-1, 4, 7-triazacyclononane, was prepared via condensation with 2,3-dimethoxybenzoyl chloride. The deprotection of the catechol moieties was achieved with boron tribromide in 80% yields. The ferric complexes were characterized by electronic absorption spectroscopy. The second series of ligands described are based on the pendant arm macrocyclic ligand, 1, 4, 7-triaminoethyl-1, 4, 7- triazacyclononane. New routes to the preparation of this ligand were investigated; the best approach used chloroacetyl chloride as the reagent in functionalizing the nitrogen atoms of the triazacyclononane ring. The ligands, 1, 4, 7-tris-((2, 3- dihydroxyphenethyl) aminoethyl)-1, 4, 7-triazacyclononane (34) and 1, 4, 7-tris-((2, 3-dihydroxybenzyl)aminoethyl)-1, 4, 7- triazacyclononane (36) were prepared through a series of acid chloride condensation reactions, followed by reduction of the amides with diborane. The mononuclear ferric complexes of compounds 34 and 36 Were prepared and characterized by uv-visible spectroscopy. Mononuclear nickel, cobalt, and copper complexes of these ligands were also characterized by uv-visible spectroscopy. The binuclear complexes, Na[NiFe(34)] and Na[NiFe(36)], were prepared and characterized by electronic absorption spectroscopy. Tris-((2, 3-dihydroxybenzylamino)ethyl) amine, tris-((2, 3- dihydroxybenzoyl)aminoethyl)amine, and tris-((2 ,3-dihydroxyphenethyl)aminoethyl)amine were prepared by Schiff base condensation reactions, or acid chloride condensation of tris-(2-aminoethyl)amine and the appropriate catecholate moiety. The ferric complexes of these ligands were prepared and characterized by uv-visible spectroscopy. The A1(III) tris-((2,3-dihydroxybenzyl)aminoethyl)amine complex was examined by nmr spectroscopy. The Ni(II), Cu(Il) and Co(III) complexes were investigated by electronic absorption spectroscopy. The rates of base hydrolysis of [Co(tacn) (en)Cl]2+ (tacn=1, 4, 7-triazacyclononane), [Co(tacn) (amp)Cl]2+ (amp=2- aminomethylpyridine), [Co(tacn) (tn)Cl]2+, ufac-I- [Co(dien) (amp)Cl]2+ (dien=l,4,7-triazaheptane), ufac-Il- [Co (dien) (amp)]2+ and [Co (bicycloN5) C1]2+ (bicycloN5=1, 5, 8, 12, 15-pentaazabicyclo [10.5.2] nonadecane), were measured using stopped flow techniques. The base hydrolysis rates (kCH, M-1s-1; [ionic strength (M)]) are 9.66 [0.1], 154 [0.1], 40.6 [0.1], 334 [0.1], 762 [0.1], and 3X103 [1.0], respectively. The rate of [NCS-] anation of [Co (bicycloN5) (OH2)]3+, and the rates of [Br-] and [NCS-] anation of [Co (tacn) (en) (OH2)]3+ were measured as a function of pH. The pKa of the coordinated water molecules are 3.8 ([Co (bicycloN5) (OH2)]3+) and 6.5 ((Co(tacn) (en) (OH2)]3+) . The anation rates increase as the pH increases, indicating a base catalysed anation reaction through the deprotonation of the coordinated amine. In the case of the [Co(tacn) (en) (OH2)]3+ complex, the rate increases as the pH increases until the pH ~ 7, then there is no reaction after that point, suggesting some sort of blockage at the five-coordinate intermediate."],"dc:identifier.uri":["http://hdl.handle.net/1828/9637"],"dc:language":["English"],"dc:language.iso":["en"],"dc:rights":["Available to the World Wide Web"],"dc:subject":["Macrocyclic compounds","Ligands"],"dc:title":["Synthesis of novel pendant arm macrocyclic ligands as potential models for enterobactin"],"dc:type":["Thesis"]},"updated_at":"2026-07-24T05:52:40Z"}