ISBN: 9781461405474
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ISBN: 9781461405474
Graphene has emerged as a potential candidate to replace traditional CMOS for a number of electronic applications; this book presents the latest advances in graphene nanoelectronics and t… Plus…
Murali, Raghu (Herausgeber):
Graphene Nanoelectronics From Materials to Circuits - edition reliée, livre de poche2012, ISBN: 1461405475
2012 Gebundene Ausgabe Nanotechnologie, Technologie / Nanotechnologie, GrapheneCircuitsandArchitectures; IntegratedCircuitsandSystems; Post-CMOSLogic, mit Schutzumschlag 11, [PU:Springe… Plus…
2012
ISBN: 9781461405474
[PU: Springer US], gepflegter, sauberer Zustand, Ausgabejahr 2012 10838704/12, DE, [SC: 0.00], gebraucht; sehr gut, gewerbliches Angebot, 2012, Banküberweisung, PayPal, Klarna-Sofortüberw… Plus…
2012, ISBN: 1461405475
[EAN: 9781461405474], Neubuch, [PU: Springer New York 2012-03-13, New York |London], Language: ENG, Books
2012, ISBN: 1461405475
[EAN: 9781461405474], Neubuch, [PU: Springer 2012-03-14], Books
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Informations détaillées sur le livre - Graphene Nanoelectronics: From Materials to Circuits
EAN (ISBN-13): 9781461405474
ISBN (ISBN-10): 1461405475
Version reliée
Date de parution: 2011
Editeur: Springer-Verlag GmbH
265 Pages
Poids: 0,561 kg
Langue: Englisch
Livre dans la base de données depuis 2009-02-15T00:53:05+01:00 (Zurich)
Page de détail modifiée en dernier sur 2023-04-13T12:33:34+02:00 (Zurich)
ISBN/EAN: 1461405475
ISBN - Autres types d'écriture:
1-4614-0547-5, 978-1-4614-0547-4
Autres types d'écriture et termes associés:
Auteur du livre: mura, welser
Titre du livre: graphene nanoelectronics, circuits
Données de l'éditeur
Auteur: Raghu Murali
Titre: Graphene Nanoelectronics - From Materials to Circuits
Editeur: Springer; Springer US
265 Pages
Date de parution: 2012-03-13
New York; NY; US
Imprimé / Fabriqué en
Poids: 0,588 kg
Langue: Anglais
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
XII, 265 p.
BB; Circuits and Systems; Hardcover, Softcover / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Schaltkreise und Komponenten (Bauteile); Verstehen; Graphene; Graphene Circuits and Architectures; Integrated Circuits and Systems; Nanoelectronics; Post-CMOS Logic; Electronic Circuits and Devices; Nanotechnology; Electronic Circuits and Systems; Nanotechnology; Nanotechnologie; EA; BC
Graphene has emerged as a potential candidate to replace traditional CMOS for a number of electronic applications; this book presents the latest advances in graphene nanoelectronics and the potential benefits of using graphene in a wide variety of electronic applications. The book also provides details on various methods to grow graphene, including epitaxial, CVD, and chemical methods. This book serves as a spring-board for anyone trying to start working on graphene. The book is also suitable to experts who wish to update themselves with the latest findings in the field.
CMOS Performance Scaling.- Electronic Transport in Graphene.- Graphene Transistors.- Alternate State Variables for Graphene Transistors.- Transport of Novel State Variables.- Formation of Epitaxial Graphene.- Graphene Growth by CVD Methods.- Chemical Approaches to Produce Graphene Oxide and Related Materials.- Atomic Layer Deposition of Dielectrics on Graphene.
The rapid growth of the electronics industry can be attributed in large part to the scalability of the transistor. Continued scaling of transistor dimensions has enabled increased functionality with each new generation of integrated circuits. Historically, this scaling has followed Moore’s Law – which became a self-fulfilling prophecy – wherein the number of transistors on a chip is doubled every 18-24 months. However, a number of bottlenecks arise beyond c. 2020 that will impede this progress and this will lead to high heat dissipation in ICs, large power consumption, and low chip yield. Thus, beyond c. 2020, the electronics industry needs novel technologies that enable continued increases in chip functionality. Considering that the transition from research to manufacturing can take 10 years or more for novel technologies, there is considerable effort world-wide to identify next-generation enablers for electronics. Graphene is one of the most promising materials to replace Silicon, and this book discusses a number of aspects of graphene for nanoelectronics applications. With the growing interest in this material, this book serves as a spring-board for anyone trying to start working on this topic. The book contains in-depth discussions of graphene properties, transistors, novel state variables, interconnects, growth, and device fabrication.
Describes the transport properties of graphene
Includes a detailed discussion of alternative state variables such as spin and excitons
Provides insight into graphene transistors and interconnects for both analog and digital electronics
Presents the latest advances in graphene growth by various techniques - epitaxial growth, chemical vapor deposition and chemical methods
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