Transition Metal Complexes for Molecular Electronics and Devices: Coordination Chemistry Perspectives
Editat de Munetaka Akita, Paul J Low, Yuya Tanakaen Limba Engleză Hardback – 16 dec 2026
Originally envisioned as a solution to the limits of semiconductor miniaturization, molecular electronics has evolved into a rich, multidisciplinary field. This book investigates the electronic, optical, chemical, and materials properties of molecular junctions--systems where molecules act as the active components of electronic devices.
Focusing on the transformative role of metal complexes, this volume expands the traditional organic framework of molecular electronics. Readers will discover how the inclusion of metal centres introduces new dimensions of spin, magnetism, redox activity, and structural versatility, reshaping our understanding of charge transport at the nanoscale.
From foundational mixed-valence models to cutting-edge experimental and computational studies, this book offers a comprehensive overview of intramolecular charge transport. It is an essential resource for researchers and students seeking to understand the current state and future potential of metal complex-based molecular electronics.
Preț: 1408.97 lei
Preț vechi: 1904.01 lei
-26% Precomandă
Puncte Express: 2113
Carte nepublicată încă
Livrare prin curier în România Precomanda se expediază când titlul devine disponibil.
Transport gratuit pentru acest produs Plată online sau ramburs, în funcție de opțiunile comenzii.
Retur gratuit în 14 zile Comandă securizată și suport în română.
Doresc să fiu notificat când acest titlu va fi disponibil:
Se trimite...
Specificații
ISBN-13: 9781837070114
ISBN-10: 1837070113
Pagini: 400
Dimensiuni: 156 x 234 x 22 mm
Greutate: 0.59 kg
Editura: Royal Society Of Chemistry
Colecția Coordination Chemistry Perspectives
Seria Coordination Chemistry Perspectives
ISBN-10: 1837070113
Pagini: 400
Dimensiuni: 156 x 234 x 22 mm
Greutate: 0.59 kg
Editura: Royal Society Of Chemistry
Colecția Coordination Chemistry Perspectives
Seria Coordination Chemistry Perspectives