Supramolecular chemistry : from concepts to applications / / Stefan Kubik |
Autore | Kubik Stefan |
Pubbl/distr/stampa | Berlin, Germany ; ; Boston, Massachusetts : , : De Gruyter, , [2021] |
Descrizione fisica | 1 online resource (XVI, 597 p.) |
Disciplina | 547.7 |
Collana | De Gruyter Textbook |
Soggetto topico | Supramolecular chemistry |
Soggetto non controllato |
Macrocyclic Compounds
Molecular Recognition Supramolecular Chemistry |
ISBN |
3-11-059357-2
3-11-059561-3 |
Classificazione | VK 7150 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | Frontmatter -- Preface -- Contents -- Questions discussed -- 1. Introduction and overview -- 2. Analyzing complex formation -- 3. Understanding molecular recognition -- 4. Hosting ions and molecules -- 5. Assembling molecules -- 6. Threading molecules -- 7. Controlling molecular motion -- 8. Mediating molecular transformations -- 9. Transporting molecules -- 10. Detecting molecules -- 11. Applying supramolecular systems -- 12. Appendices -- Index |
Record Nr. | UNINA-9910554273603321 |
Kubik Stefan | ||
Berlin, Germany ; ; Boston, Massachusetts : , : De Gruyter, , [2021] | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Terpyridine-based materials [[electronic resource] ] : for catalytic, optoelectronic and life science applications / / Ulrich S. Schubert, Andreas Winter, and George R. Newkome |
Autore | Schubert U (Ulrich) |
Pubbl/distr/stampa | Weinheim, Germany, : Wiley-VCH, 2011 |
Descrizione fisica | 1 online resource (544 p.) |
Disciplina | 547.593 |
Altri autori (Persone) |
WinterAndreas
NewkomeGeorge R (George Richard) |
Soggetto topico | Pyridine |
ISBN |
3-527-63963-2
1-283-37057-3 9786613370570 3-527-63962-4 3-527-63964-0 |
Classificazione |
540
VK 7150 VK 7200 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Terpyridine-based Materials: For Catalytic, Optoelectronic and Life Science Applications; Contents; Preface; List of Abbreviations; 1: Introduction; 2: Synthesis, Properties, and Applications of Functionalized 2,2 ;-Terpyridines; 2.1: Introduction; 2.2: Basic Synthetic Strategies; 2.2.1: Ring-Assembly Methodologies; 2.2.2: Cross-Coupling Procedures; 2.3: Synthesis and Properties of 2,-Terpyridine Derivatives; 2.3.1: 4x2032;-Substituted 2, Terpyridinoxy Derivatives; 2.3.2: Miscellaneous 4;-Substituted 2,2032;-Terpyridine Derivatives
3.3.1: Synthesis of RuII and OsII Bis(terpyridine) Complexes 3.3.2: RuII Ions and Terpyridine Ligands - A Happy Marriage?; 3.3.2.1: Photophysical Properties; 3.3.2.2: Mononuclear RuII Bis(terpyridine) Complexes; 3.3.2.3: Oligonuclear Complexes Containing RuII/OsII Bis(terpyridine) Units; 3.3.2.4: Dendritic and Star-Shaped Systems Containing RuII Bis(terpyridine) Units; 3.4: Iridium(III) Complexes with Terpyridine Ligands; 3.5: Platinum(II) Mono(terpyridine) Complexes; 4: Metallo-Supramolecular Architectures Based on Terpyridine Complexes; 4.1: Introduction 4.2: Terpyridine-Containing Metallo-Macrocycles 4.3: The HETTAP Concept; 4.4: Racks and Grids; 4.5: Helicates; 4.6: Rotaxanes and Catenanes; 4.7: Miscellaneous Structures; 4.7.1: Cyclodextrin Derivatives; 4.7.2: Other Assemblies; 5: CO; -Conjugated Polymers Incorporating Terpyridine Metal Complexes; 5.1: Introduction; 5.2: Metallo-Supramolecular Polymerization; 5.3: Metallopolymers Based on CO; -Conjugated Bis(terpyridine)s; 5.3.1: Polymerization by Transition Metal Ion Coordination; 5.3.2: Self-Assembly of Metallopolymers; 5.3.3: Chiral Metallopolymers; 5.3.4: Non-Classical Metallopolymers 5.3.5: Polymerization Using the ''Complex First'' Method 5.4: Main-Chain Metallopolymers Based on Terpyridine-Functionalized CO; -Conjugated Polymers; 6: Functional Polymers Incorporating Terpyridine-Metal Complexes; 6.1: Introduction; 6.2: Polymers with Terpyridine Units in the Side-Chain; 6.2.1: Materials Based on Flexible Organic Polymers; 6.2.2: Materials Based on CO; -Conjugated Polymers; 6.3: Polymers with Terpyridines within the Polymer Backbone; 6.3.1: Polymers from Organic Small-Molecule Building Blocks; 6.3.2: Chain-Extended Polymers from Polymeric Building Blocks 6.3.3: Monotopic Macroligands by End-Group Functionalization |
Record Nr. | UNINA-9910139742503321 |
Schubert U (Ulrich) | ||
Weinheim, Germany, : Wiley-VCH, 2011 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Terpyridine-based materials : for catalytic, optoelectronic and life science applications / / Ulrich S. Schubert, Andreas Winter, and George R. Newkome |
Autore | Schubert U (Ulrich) |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Weinheim, Germany, : Wiley-VCH, 2011 |
Descrizione fisica | 1 online resource (544 p.) |
Disciplina | 547.593 |
Altri autori (Persone) |
WinterAndreas
NewkomeGeorge R (George Richard) |
Soggetto topico | Pyridine |
ISBN |
3-527-63963-2
1-283-37057-3 9786613370570 3-527-63962-4 3-527-63964-0 |
Classificazione |
540
VK 7150 VK 7200 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Terpyridine-based Materials: For Catalytic, Optoelectronic and Life Science Applications; Contents; Preface; List of Abbreviations; 1: Introduction; 2: Synthesis, Properties, and Applications of Functionalized 2,2 ;-Terpyridines; 2.1: Introduction; 2.2: Basic Synthetic Strategies; 2.2.1: Ring-Assembly Methodologies; 2.2.2: Cross-Coupling Procedures; 2.3: Synthesis and Properties of 2,-Terpyridine Derivatives; 2.3.1: 4x2032;-Substituted 2, Terpyridinoxy Derivatives; 2.3.2: Miscellaneous 4;-Substituted 2,2032;-Terpyridine Derivatives
3.3.1: Synthesis of RuII and OsII Bis(terpyridine) Complexes 3.3.2: RuII Ions and Terpyridine Ligands - A Happy Marriage?; 3.3.2.1: Photophysical Properties; 3.3.2.2: Mononuclear RuII Bis(terpyridine) Complexes; 3.3.2.3: Oligonuclear Complexes Containing RuII/OsII Bis(terpyridine) Units; 3.3.2.4: Dendritic and Star-Shaped Systems Containing RuII Bis(terpyridine) Units; 3.4: Iridium(III) Complexes with Terpyridine Ligands; 3.5: Platinum(II) Mono(terpyridine) Complexes; 4: Metallo-Supramolecular Architectures Based on Terpyridine Complexes; 4.1: Introduction 4.2: Terpyridine-Containing Metallo-Macrocycles 4.3: The HETTAP Concept; 4.4: Racks and Grids; 4.5: Helicates; 4.6: Rotaxanes and Catenanes; 4.7: Miscellaneous Structures; 4.7.1: Cyclodextrin Derivatives; 4.7.2: Other Assemblies; 5: CO; -Conjugated Polymers Incorporating Terpyridine Metal Complexes; 5.1: Introduction; 5.2: Metallo-Supramolecular Polymerization; 5.3: Metallopolymers Based on CO; -Conjugated Bis(terpyridine)s; 5.3.1: Polymerization by Transition Metal Ion Coordination; 5.3.2: Self-Assembly of Metallopolymers; 5.3.3: Chiral Metallopolymers; 5.3.4: Non-Classical Metallopolymers 5.3.5: Polymerization Using the ''Complex First'' Method 5.4: Main-Chain Metallopolymers Based on Terpyridine-Functionalized CO; -Conjugated Polymers; 6: Functional Polymers Incorporating Terpyridine-Metal Complexes; 6.1: Introduction; 6.2: Polymers with Terpyridine Units in the Side-Chain; 6.2.1: Materials Based on Flexible Organic Polymers; 6.2.2: Materials Based on CO; -Conjugated Polymers; 6.3: Polymers with Terpyridines within the Polymer Backbone; 6.3.1: Polymers from Organic Small-Molecule Building Blocks; 6.3.2: Chain-Extended Polymers from Polymeric Building Blocks 6.3.3: Monotopic Macroligands by End-Group Functionalization |
Record Nr. | UNINA-9910822310903321 |
Schubert U (Ulrich) | ||
Weinheim, Germany, : Wiley-VCH, 2011 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|