Ulrich S. Schubert, Andreas Winter, George R. Newkome
Terpyridines
Multifaceted Ligands for Diverse Applications
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Erscheint vorauss. 21. Januar 2026
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Ulrich S. Schubert, Andreas Winter, George R. Newkome
Terpyridines
Multifaceted Ligands for Diverse Applications
- Gebundenes Buch
The book is a must-have for researchers at universities and industry who want to learn about the synthesis and applications of prominent terpyridine complexes.
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The book is a must-have for researchers at universities and industry who want to learn about the synthesis and applications of prominent terpyridine complexes.
Produktdetails
- Produktdetails
- Verlag: Wiley-VCH
- Artikelnr. des Verlages: 1135452 000
- 1. Auflage
- Seitenzahl: 544
- Erscheinungstermin: 21. Januar 2026
- Englisch
- Abmessung: 244mm x 170mm
- ISBN-13: 9783527354528
- ISBN-10: 3527354522
- Artikelnr.: 74314941
- Herstellerkennzeichnung
- Wiley-VCH GmbH
- Boschstraße 12
- 69469 Weinheim
- wiley-vch@kolibri360.de
- Verlag: Wiley-VCH
- Artikelnr. des Verlages: 1135452 000
- 1. Auflage
- Seitenzahl: 544
- Erscheinungstermin: 21. Januar 2026
- Englisch
- Abmessung: 244mm x 170mm
- ISBN-13: 9783527354528
- ISBN-10: 3527354522
- Artikelnr.: 74314941
- Herstellerkennzeichnung
- Wiley-VCH GmbH
- Boschstraße 12
- 69469 Weinheim
- wiley-vch@kolibri360.de
Ulrich S. Schubert is a full professor at Friedrich Schiller University Jena (Germany) since 2007. His research is focused on innovative materials as key elements for healthcare, sustainability, and energy. Andreas Winter is a research associate at Friedrich Schiller University Jena (Germany). His research is focused on the synthesis of metallo-supramolecular materials for opto-electronic and energy conversion applications. George R. Newkome is a research professor in the Center for Molecular Biology and Biochemistry at Florida Atlantic University (USA). He is a pioneer in cascade polymer research and is an expert in their construction and supramolecular applications.
Preface
1) 2,2':6',2''-Terpyridine - Introduction, Historic Overview, and Fundamental Aspects
2) Beyond 2,2':6',2'' Terpyridine - Coordination Chemistry of its Constitutional Isomers
3) Terpyridine Ligands and Main-group Elements: An Often-Overlooked Field of Research
4) The Bio-Medicinal Relevance of Terpyridine Ligands and Their Metal Complexes
5) Terpyridine Complexes for Energy-Storage Applications
6) Terpyridine Ligands and Complexes in the Context of Photovoltaic Applications
7) The Bright Side of Terpyridine Chemistry: Light-Emitting Tpy Ligands and Complexes
8) Terpyridine Complexes for Electrocatalytic Applications - CO2 Reduction, Water Splitting and Beyond
9) Staying in Good Shape? Topy-Containing Polymers for Self-Healing and Shape-Memory Applications
10) Metallo-Supramolecular Nanosized Constructs Based on Metal-Terpyridine Complexes
1) 2,2':6',2''-Terpyridine - Introduction, Historic Overview, and Fundamental Aspects
2) Beyond 2,2':6',2'' Terpyridine - Coordination Chemistry of its Constitutional Isomers
3) Terpyridine Ligands and Main-group Elements: An Often-Overlooked Field of Research
4) The Bio-Medicinal Relevance of Terpyridine Ligands and Their Metal Complexes
5) Terpyridine Complexes for Energy-Storage Applications
6) Terpyridine Ligands and Complexes in the Context of Photovoltaic Applications
7) The Bright Side of Terpyridine Chemistry: Light-Emitting Tpy Ligands and Complexes
8) Terpyridine Complexes for Electrocatalytic Applications - CO2 Reduction, Water Splitting and Beyond
9) Staying in Good Shape? Topy-Containing Polymers for Self-Healing and Shape-Memory Applications
10) Metallo-Supramolecular Nanosized Constructs Based on Metal-Terpyridine Complexes
Preface
1) 2,2':6',2''-Terpyridine - Introduction, Historic Overview, and Fundamental Aspects
2) Beyond 2,2':6',2'' Terpyridine - Coordination Chemistry of its Constitutional Isomers
3) Terpyridine Ligands and Main-group Elements: An Often-Overlooked Field of Research
4) The Bio-Medicinal Relevance of Terpyridine Ligands and Their Metal Complexes
5) Terpyridine Complexes for Energy-Storage Applications
6) Terpyridine Ligands and Complexes in the Context of Photovoltaic Applications
7) The Bright Side of Terpyridine Chemistry: Light-Emitting Tpy Ligands and Complexes
8) Terpyridine Complexes for Electrocatalytic Applications - CO2 Reduction, Water Splitting and Beyond
9) Staying in Good Shape? Topy-Containing Polymers for Self-Healing and Shape-Memory Applications
10) Metallo-Supramolecular Nanosized Constructs Based on Metal-Terpyridine Complexes
1) 2,2':6',2''-Terpyridine - Introduction, Historic Overview, and Fundamental Aspects
2) Beyond 2,2':6',2'' Terpyridine - Coordination Chemistry of its Constitutional Isomers
3) Terpyridine Ligands and Main-group Elements: An Often-Overlooked Field of Research
4) The Bio-Medicinal Relevance of Terpyridine Ligands and Their Metal Complexes
5) Terpyridine Complexes for Energy-Storage Applications
6) Terpyridine Ligands and Complexes in the Context of Photovoltaic Applications
7) The Bright Side of Terpyridine Chemistry: Light-Emitting Tpy Ligands and Complexes
8) Terpyridine Complexes for Electrocatalytic Applications - CO2 Reduction, Water Splitting and Beyond
9) Staying in Good Shape? Topy-Containing Polymers for Self-Healing and Shape-Memory Applications
10) Metallo-Supramolecular Nanosized Constructs Based on Metal-Terpyridine Complexes







