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Introducing Molecular Electronics100%: Redactor: Gianaurelio Cuniberti, Redactor de series: Giorgos Fagas, Redactor de series: Klaus Richter: Introducing Molecular Electronics (ISBN: 9783642066283) 2010, Erstausgabe, in Englisch, Taschenbuch.
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Introducing Molecular Electronics100%: Gianaurelio Cuniberti: Introducing Molecular Electronics (ISBN: 9783540279945) 2005, 2005. Ausgabe, in Englisch, Broschiert.
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Introducing Molecular Electronics46%: Springer: Introducing Molecular Electronics (ISBN: 9783540315148) 2006, in Deutsch, auch als eBook.
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9783642066283 - Gianaurelio Cuniberti: Introducing Molecular Electronics
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Gianaurelio Cuniberti

Introducing Molecular Electronics (2010)

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ISBN: 9783642066283 bzw. 3642066283, in Deutsch, Springer Okt 2010, Taschenbuch, neu, Nachdruck.

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This item is printed on demand - Print on Demand Titel. - This volume presents a summary of our current understanding of molecular electronics combined with selected state-of-the-art results at a level accessible to the advanced undergraduate or novice postgraduate. This single book comprises the basic knowledge of both theory and experiment underpinning this rapidly growing field. Concepts and techniques such as density functional theory and charge transport, break junctions and scanning probe microscopy are introduced step-by-step and are subsequently used in specific examples. The text addresses a wide range of systems including molecular junctions made of single-molecules, self-assembled monolayers, carbon nanotubes and DNA. 540 pp. Englisch.
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9783642066283 - Introducing Molecular Electronics (Lecture Notes in Physics)
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Introducing Molecular Electronics (Lecture Notes in Physics)

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Von Händler/Antiquariat, BuySomeBooks [52360437], Las Vegas, NV, U.S.A.
This item is printed on demand. Paperback. This volume presents a summary of our current understanding of molecular electronics combined with selected state-of-the-art results at a level accessible to the advanced undergraduate or novice postgraduate. This single book comprises the basic knowledge of both theory and experiment underpinning this rapidly growing field. Concepts and techniques such as density functional theory and charge transport, break junctions and scanning probe microscopy are introduced step-by-step and are subsequently used in specific examples. The text addresses a wide range of systems including molecular junctions made of single-molecules, self-assembled monolayers, carbon nanotubes and DNA. This item ships from La Vergne,TN.
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9783642066283 - Herausgegeben von Cuniberti, Gianaurelio Fagas, Giorgos Richter, Klaus: Introducing Molecular Electronics
Herausgegeben von Cuniberti, Gianaurelio Fagas, Giorgos Richter, Klaus

Introducing Molecular Electronics

Lieferung erfolgt aus/von: Deutschland DE PB NW

ISBN: 9783642066283 bzw. 3642066283, in Deutsch, Springer, Berlin, Taschenbuch, neu.

Lieferung aus: Deutschland, Versandkostenfrei.
buecher.de GmbH & Co. KG, [1].
Klaus von Klitzing Max-Planck-Institut fur Festk orperforschung, Heisenbergstraße 1, 70569 Stuttgart, Germany Already many Cassandras have prematurely announced the end of the silicon roadmap and yet, conventional semiconductor-based transistors have been continuously shrinking at a pace which has brought us to nowadays cheap and powerful microelectronics. However it is clear that the traditional scaling laws cannot be applied if unwanted tunnel phenomena or ballistic transport ***te the device properties. It is generally expected, that a combination of silicon CMOS devices with molecular structure will ***te the "eld of nanoelectronics in 20 years. The visionary ideas of atomic- or molecular-scale electronics already date back thirty years but only recently advanced nanotechnology, including e.g. scanning tunneling methods and mechanically controllable break junctions, have enabled to make distinct progress in this direction. On the level of f- damentalresearch,stateofthearttechniquesallowtomanipulate,imageand probechargetransportthroughuni-molecularsystemsinanincreasinglyc- trolled way. Hence, molecular electronics is reaching a stage of trustable and reproducible experiments. This has lead to a variety of physical and chemical phenomena recently observed for charge currents owing through molecular junctions, posing new challenges to theory. As a result a still increasing n- ber of open questions determines the future agenda in this "eld.2010. XIV, 518 S. 217 SW-Abb., 11 Tabellen. 235 mmVersandfertig in 3-5 Tagen, Softcover.
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9783540279945 - Gianaurelio Cuniberti: Introducing Molecular Electronics
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Gianaurelio Cuniberti

Introducing Molecular Electronics (2005)

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ISBN: 9783540279945 bzw. 3540279946, vermutlich in Englisch, Springer-Verlag Gmbh Dez 2005, neu.

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Neuware - Klaus von Klitzing Max-Planck-Institut fur Festk orperforschung, Heisenbergstraße 1, 70569 Stuttgart, Germany Already many Cassandras have prematurely announced the end of the silicon roadmap and yet, conventional semiconductor-based transistors have been continuously shrinking at a pace which has brought us to nowadays cheap and powerful microelectronics. However it is clear that the traditional scaling laws cannot be applied if unwanted tunnel phenomena or ballistic transport dominate the device properties. It is generally expected, that a combination of silicon CMOS devices with molecular structure will dominate the eld of nanoelectronics in 20 years. The visionary ideas of atomic- or molecular-scale electronics already date back thirty years but only recently advanced nanotechnology, including e.g. scanning tunneling methods and mechanically controllable break junctions, have enabled to make distinct progress in this direction. On the level of f- damentalresearch,stateofthearttechniquesallowtomanipulate,imageand probechargetransportthroughuni-molecularsystemsinanincreasinglyc- trolled way. Hence, molecular electronics is reaching a stage of trustable and reproducible experiments. This has lead to a variety of physical and chemical phenomena recently observed for charge currents owing through molecular junctions, posing new challenges to theory. As a result a still increasing n- ber of open questions determines the future agenda in this eld. 518 pp. Englisch, Books.
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9783540279945 - Gianaurelio Cuniberti: Introducing Molecular Electronics
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Gianaurelio Cuniberti

Introducing Molecular Electronics (2005)

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Von Händler/Antiquariat, BuchWeltWeit Inh. Ludwig Meier e.K. [57449362], Bergisch Gladbach, Germany.
Neuware - Klaus von Klitzing Max-Planck-Institut fur Festk orperforschung, Heisenbergstraße 1, 70569 Stuttgart, Germany Already many Cassandras have prematurely announced the end of the silicon roadmap and yet, conventional semiconductor-based transistors have been continuously shrinking at a pace which has brought us to nowadays cheap and powerful microelectronics. However it is clear that the traditional scaling laws cannot be applied if unwanted tunnel phenomena or ballistic transport dominate the device properties. It is generally expected, that a combination of silicon CMOS devices with molecular structure will dominate the eld of nanoelectronics in 20 years. The visionary ideas of atomic- or molecular-scale electronics already date back thirty years but only recently advanced nanotechnology, including e.g. scanning tunneling methods and mechanically controllable break junctions, have enabled to make distinct progress in this direction. On the level of f- damentalresearch,stateofthearttechniquesallowtomanipulate,imageand probechargetransportthroughuni-molecularsystemsinanincreasinglyc- trolled way. Hence, molecular electronics is reaching a stage of trustable and reproducible experiments. This has lead to a variety of physical and chemical phenomena recently observed for charge currents owing through molecular junctions, posing new challenges to theory. As a result a still increasing n- ber of open questions determines the future agenda in this eld. 517 pp. Englisch, Books.
6
9783540279945 - Sous la direction de: Gianaurelio Cuniberti, Sous la direction de: Giorgos Faga, Sous la direction de: Klaus Richter: Introducing Molecular Electronics
Sous la direction de: Gianaurelio Cuniberti, Sous la direction de: Giorgos Faga, Sous la direction de: Klaus Richter

Introducing Molecular Electronics (2005)

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9783540279945 - Editor: Gianaurelio Cuniberti, Editor: Giorgos Fagas, Editor: Klaus Richter: Introducing Molecular Electronics (Lecture Notes in Physics)
Editor: Gianaurelio Cuniberti, Editor: Giorgos Fagas, Editor: Klaus Richter

Introducing Molecular Electronics (Lecture Notes in Physics) (2005)

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Klaus von Klitzing Max-Planck-Institut fur .. Festk. orperforschung, Heisenbergstrasse 1, 70569 Stuttgart, Germany Already many Cassandras have prematurely announced the end of the silicon roadmap and yet, conventional semiconductor-based transistors have been continuously shrinking at a pace which has brought us to nowadays cheap and powerful microelectronics. However it is clear that the traditional scaling laws cannot be applied if unwanted tunnel phenomena or ballistic transport dominate the device properties. It is generally expected, that a combination of silicon CMOS devices with molecular structure will dominate the "eld of nanoelectronics in 20 years. The visionary ideas of atomic- or molecular-scale electronics already date back thirty years but only recently advanced nanotechnology, including e.g. scanning tunneling methods and mechanically controllable break junctions, have enabled to make distinct progress in this direction. On the level of f- damentalresearch,stateofthearttechniquesallowtomanipulate,imageand probechargetransportthroughuni-molecularsystemsinanincreasinglyc- trolled way. Hence, molecular electronics is reaching a stage of trustable and reproducible experiments. This has lead to a variety of physical and chemical phenomena recently observed for charge currents owing through molecular junctions, posing new challenges to theory. As a result a still increasing n- ber of open questions determines the future agenda in this "eld. Hardcover, Ausgabe: 2005, Label: Springer, Springer, Produktgruppe: Book, Publiziert: 2005-12-05, Studio: Springer, Verkaufsrang: 7111790.
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9783540279945 - Editor: Gianaurelio Cuniberti, Editor: Giorgos Fagas, Editor: Klaus Richter: Introducing Molecular Electronics (Lecture Notes in Physics)
Editor: Gianaurelio Cuniberti, Editor: Giorgos Fagas, Editor: Klaus Richter

Introducing Molecular Electronics (Lecture Notes in Physics) (2005)

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Klaus von Klitzing Max-Planck-Institut fur ¨ Festk¨ orperforschung, Heisenbergstraße 1, 70569 Stuttgart, Germany Already many Cassandras have prematurely announced the end of the silicon roadmap and yet, conventional semiconductor-based transistors have been continuously shrinking at a pace which has brought us to nowadays cheap and powerful microelectronics. However it is clear that the traditional scaling laws cannot be applied if unwanted tunnel phenomena or ballistic transport ***te the device properties. It is generally expected, that a combination of silicon CMOS devices with molecular structure will ***te the "eld of nanoelectronics in 20 years. The visionary ideas of atomic- or molecular-scale electronics already date back thirty years but only recently advanced nanotechnology, including e.g. scanning tunneling methods and mechanically controllable break junctions, have enabled to make distinct progress in this direction. On the level of f- damentalresearch,stateofthearttechniquesallowtomanipulate,imageand probechargetransportthroughuni-molecularsystemsinanincreasinglyc- trolled way. Hence, molecular electronics is reaching a stage of trustable and reproducible experiments. This has lead to a variety of physical and chemical phenomena recently observed for charge currents owing through molecular junctions, posing new challenges to theory. As a result a still increasing n- ber of open questions determines the future agenda in this "eld. Hardcover, Ausgabe: 2005, Label: Springer, Springer, Produktgruppe: Book, Publiziert: 2005-12-21, Studio: Springer, Verkaufsrang: 6871573.
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9783642066283 - Gianaurelio Cuniberti; Giorgos Fagas; Klaus Richter: Introducing Molecular Electronics
Gianaurelio Cuniberti; Giorgos Fagas; Klaus Richter

Introducing Molecular Electronics

Lieferung erfolgt aus/von: Deutschland ~EN PB NW

ISBN: 9783642066283 bzw. 3642066283, vermutlich in Englisch, Springer Shop, Taschenbuch, neu.

Lieferung aus: Deutschland, Lagernd.
Klaus von Klitzing Max-Planck-Institut fur ¨ Festk¨ orperforschung, Heisenbergstraße 1, 70569 Stuttgart, Germany Already many Cassandras have prematurely announced the end of the silicon roadmap and yet, conventional semiconductor-based transistors have been continuously shrinking at a pace which has brought us to nowadays cheap and powerful microelectronics. However it is clear that the traditional scaling laws cannot be applied if unwanted tunnel phenomena or ballistic transport dominate the device properties. It is generally expected, that a combination of silicon CMOS devices with molecular structure will dominate the "eld of nanoelectronics in 20 years. The visionary ideas of atomic- or molecular-scale electronics already date back thirty years but only recently advanced nanotechnology, including e.g. scanning tunneling methods and mechanically controllable break junctions, have enabled to make distinct progress in this direction. On the level of f- damentalresearch,stateofthearttechniquesallowtomanipulate,imageand probechargetransportthroughuni-molecularsystemsinanincreasinglyc- trolled way. Hence, molecular electronics is reaching a stage of trustable and reproducible experiments. This has lead to a variety of physical and chemical phenomena recently observed for charge currents owing through molecular junctions, posing new challenges to theory. As a result a still increasing n- ber of open questions determines the future agenda in this "eld. Soft cover.
10
9783540279945 - Gianaurelio Cuniberti; Giorgos Fagas; Klaus Richter: Introducing Molecular Electronics
Gianaurelio Cuniberti; Giorgos Fagas; Klaus Richter

Introducing Molecular Electronics

Lieferung erfolgt aus/von: Deutschland ~EN HC NW

ISBN: 9783540279945 bzw. 3540279946, vermutlich in Englisch, Springer Shop, gebundenes Buch, neu.

Lieferung aus: Deutschland, Lagernd.
Klaus von Klitzing Max-Planck-Institut fur ¨ Festk¨ orperforschung, Heisenbergstraße 1, 70569 Stuttgart, Germany Already many Cassandras have prematurely announced the end of the silicon roadmap and yet, conventional semiconductor-based transistors have been continuously shrinking at a pace which has brought us to nowadays cheap and powerful microelectronics. However it is clear that the traditional scaling laws cannot be applied if unwanted tunnel phenomena or ballistic transport dominate the device properties. It is generally expected, that a combination of silicon CMOS devices with molecular structure will dominate the "eld of nanoelectronics in 20 years. The visionary ideas of atomic- or molecular-scale electronics already date back thirty years but only recently advanced nanotechnology, including e.g. scanning tunneling methods and mechanically controllable break junctions, have enabled to make distinct progress in this direction. On the level of f- damentalresearch,stateofthearttechniquesallowtomanipulate,imageand probechargetransportthroughuni-molecularsystemsinanincreasinglyc- trolled way. Hence, molecular electronics is reaching a stage of trustable and reproducible experiments. This has lead to a variety of physical and chemical phenomena recently observed for charge currents owing through molecular junctions, posing new challenges to theory. As a result a still increasing n- ber of open questions determines the future agenda in this "eld. Hard cover.
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