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Molecular Spintronics: From Organic Semiconductors To Self-assembled Monolayers100%: Galbiati, Marta: Molecular Spintronics: From Organic Semiconductors To Self-assembled Monolayers (ISBN: 9783319369648) in Englisch, Broschiert.
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Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers76%: Galbiati, Marta: Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers (ISBN: 9783319226101) 2016, in Deutsch, Broschiert.
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Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers (Springer Theses)56%: Marta Galbiati, Marta Galbiati: Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers (Springer Theses) (ISBN: 9783319226118) Erstausgabe, in Englisch, auch als eBook.
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Molecular Spintronics: From Organic Semiconductors To Self-assembled Monolayers
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9783319369648 - Marta Galbiati: Molecular Spintronics
Marta Galbiati

Molecular Spintronics

Lieferung erfolgt aus/von: Österreich ~EN PB NW

ISBN: 9783319369648 bzw. 3319369644, vermutlich in Englisch, Springer Shop, Taschenbuch, neu.

90,94
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This thesis targets molecular or organic spintronics and more particularly the spin polarization tailoring opportunities that arise from the ferromagnetic metal/molecule hybridization at interfaces: the new concept of spinterface. Molecular or organic spintronics is an emerging research field at the frontier between organic chemistry and spintronics. The manuscript is divided into three parts, the first of which introduces the basic concepts of spintronics and advantages that molecules can bring to this field. The state of the art on organic and molecular spintronics is also presented, with a special emphasis on the physics and experimental evidence for spinterfaces. The book’s second and third parts are dedicated to the two main experimental topics investigated in the thesis: Self-Assembled Monolayers (SAMs) and Organic Semiconductors (OSCs). The study of SAMs-based magnetic tunnel nanojunctions reveals the potential to modulate the properties of such devices “at will,” since each part of the molecule can be tuned independently like a “LEGO” building block. The study of Alq3-based spin valves reveals magnetoresistance effects at room temperature and is aimed at understanding the respective roles played by the two interfaces. Through the development of these systems, we demonstrate their potential for spintronics and provide a solid foundation for spin polarization engineering at the molecular level. Soft cover.
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9783319369648 - Galbiati, Marta: Molecular Spintronics
Galbiati, Marta

Molecular Spintronics

Lieferung erfolgt aus/von: Deutschland DE PB NW

ISBN: 9783319369648 bzw. 3319369644, in Deutsch, Springer, Taschenbuch, neu.

Lieferung aus: Deutschland, Versandkosten nach: Deutschland, Versandkostenfrei.
Von Händler/Antiquariat, buecher.de GmbH & Co. KG, [1].
This thesis targets molecular or organic spintronics and more particularly the spin polarization tailoring opportunities that arise from the ferromagnetic metal/molecule hybridization at interfaces: the new concept of spinterface. Molecular or organic spintronics is an emerging research field at the frontier between organic chemistry and spintronics. The manuscript is divided into three parts, the first of which introduces the basic concepts of spintronics and advantages that molecules can bring to this field. The state of the art on organic and molecular spintronics is also presented, with a special emphasis on the physics and experimental evidence for spinterfaces. The book's second and third parts are dedicated to the two main experimental topics investigated in the thesis: Self-Assembled Monolayers (SAMs) and Organic Semiconductors (OSCs). The study of SAMs-based magnetic tunnel nanojunctions reveals the potential to modulate the properties of such devices "at will," since each part of the molecule can be tuned independently like a "LEGO" building block. The study of Alq3-based spin valves reveals magnetoresistance effects at room temperature and is aimed at understanding the respective roles played by the two interfaces. Through the development of these systems, we demonstrate their potential for spintronics and provide a solid foundation for spin polarization engineering at the molecular level. Versandfertig in 3-5 Tagen, Softcover, Neuware, offene Rechnung (Vorkasse vorbehalten).
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9783319369648 - Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers Marta Galbiati Author

Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers Marta Galbiati Author

Lieferung erfolgt aus/von: Vereinigte Staaten von Amerika ~EN PB NW

ISBN: 9783319369648 bzw. 3319369644, vermutlich in Englisch, Springer International Publishing, Taschenbuch, neu.

99,78 ($ 109,99)¹
unverbindlich
Lieferung aus: Vereinigte Staaten von Amerika, Lagernd, zzgl. Versandkosten.
This thesis targets molecular or organic spintronics and more particularly the spin polarization tailoring opportunities that arise from the ferromagnetic metal/molecule hybridization at interfaces: the new concept of spinterface. Molecular or organic spintronics is an emerging research field at the frontier between organic chemistry and spintronics.The manuscript is divided into three parts, the first of which introduces the basic concepts of spintronics and advantages that molecules can bring to this field. The state of the art on organic and molecular spintronics is also presented, with a special emphasis on the physics and experimental evidence for spinterfaces.The book’s second and third parts are dedicated to the two main experimental topics investigated in the thesis: Self-Assembled Monolayers (SAMs) and Organic Semiconductors (OSCs). The study of SAMs-based magnetic tunnel nanojunctions reveals the potential to modulate the properties of such devices “at will,” since each part of the molecule can be tuned independently like a “LEGO” building block. The study of Alq3-based spin valves reveals magnetoresistance effects at room temperature and is aimed at understanding the respective roles played by the two interfaces. Through the development of these systems, we demonstrate their potential for spintronics and provide a solid foundation for spin polarization engineering at the molecular level.
4
9783319369648 - Molecular Spintronics: From Organic Semiconductors To Self-assembled Monolayers

Molecular Spintronics: From Organic Semiconductors To Self-assembled Monolayers

Lieferung erfolgt aus/von: Kanada ~EN NW

ISBN: 9783319369648 bzw. 3319369644, vermutlich in Englisch, neu.

100,87 (C$ 147,84)¹
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Lieferung aus: Kanada, Lagernd, zzgl. Versandkosten.
This thesis targets molecular or organic spintronics and more particularly the spin polarization tailoring opportunities that arise from the ferromagnetic metal/molecule hybridization at interfaces: the new concept of spinterface. Molecular or organic spintronics is an emerging research field at the frontier between organic chemistry and spintronics.The manuscript is divided into three parts, the first of which introduces the basic concepts of spintronics and advantages that molecules can bring to this field. The state of the art on organic and molecular spintronics is also presented, with a special emphasis on the physics and experimental evidence for spinterfaces.The book''s second and third parts are dedicated to the two main experimental topics investigated in the thesis: Self-Assembled Monolayers (SAMs) and Organic Semiconductors (OSCs). The study of SAMs-based magnetic tunnel nanojunctions reveals the potential to modulate the properties of such devices "at will," since each part of the molecule can be tuned independently like a "LEGO" building block. The study of Alq3-based spin valves reveals magnetoresistance effects at room temperature and is aimed at understanding the respective roles played by the two interfaces. Through the development of these systems, we demonstrate their potential for spintronics and provide a solid foundation for spin polarization engineering at the molecular level.
5
9783319369648 - Marta Galbiati: Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers
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Marta Galbiati

Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers (2017)

Lieferung erfolgt aus/von: Deutschland DE PB NW RP

ISBN: 9783319369648 bzw. 3319369644, in Deutsch, Springer, Taschenbuch, neu, Nachdruck.

137,30 + Versand: 1,50 = 138,80
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Von Händler/Antiquariat, European-Media-Service Mannheim [1048135], Mannheim, Germany.
This item is printed on demand for shipment within 3 working days.
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9783319226101 - Marta Galbiati: Gebr. - Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers (Springer Theses)
Marta Galbiati

Gebr. - Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers (Springer Theses) (2016)

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ISBN: 9783319226101 bzw. 331922610X, in Deutsch, neu.

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9783319369648 - Marta Galbiati: Molecular Spintronics als von
Marta Galbiati

Molecular Spintronics als von

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ISBN: 9783319369648 bzw. 3319369644, in Deutsch, Springer, gebundenes Buch, neu.

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9783319369648 - Marta Galbiati: Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers
Marta Galbiati

Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers (2017)

Lieferung erfolgt aus/von: Deutschland EN PB NW RP

ISBN: 9783319369648 bzw. 3319369644, in Englisch, 204 Seiten, Springer, Taschenbuch, neu, Nachdruck.

Lieferung aus: Deutschland, Noch nicht erschienen. Versandkostenfrei.
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3319369644 - Molecular Spintronics

Molecular Spintronics (2016)

Lieferung erfolgt aus/von: Deutschland ~EN PB NW RP

ISBN: 3319369644 bzw. 9783319369648, vermutlich in Englisch, Taschenbuch, neu, Nachdruck.

Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen
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9783319226101 - Marta Galbiati: Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers
Marta Galbiati

Molecular Spintronics: From Organic Semiconductors to Self-Assembled Monolayers

Lieferung erfolgt aus/von: Vereinigte Staaten von Amerika DE NW

ISBN: 9783319226101 bzw. 331922610X, in Deutsch, Springer International Publishing, Springer International Publishing, Springer International Publishing, neu.

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