Redox Systems Under Nano-Space Control (Paperback)
Toshikazu Hirao
Verkauft von Grand Eagle Retail, Bensenville, IL, USA
AbeBooks-Verkäufer seit 12. Oktober 2005
Neu - Softcover
Zustand: Neu
Anzahl: 1 verfügbar
In den Warenkorb legenVerkauft von Grand Eagle Retail, Bensenville, IL, USA
AbeBooks-Verkäufer seit 12. Oktober 2005
Zustand: Neu
Anzahl: 1 verfügbar
In den Warenkorb legenPaperback. The generation of novel redox systems under nano-space control is one of the most exciting fields in present organic, inorganic, and supramolecular chemistry. The authors have drawn together the newest information on the construction of such novel redox systems using nano-space control of complexation or molecular chain-induced spaces and metal- or self-assembled spaces through combining techniques in coordination, supramolecular, and bio-inspired chemistry. Such design on the nano level produces hybrid conjugated systems composed of transition and synthetic metals, metallohosts, redox-active self-assembled monolayers of helical peptides, DNA-directed metal arrays, photoactive antibody systems, chiral rotaxanes, and redox-active imprinted polymers. In the future, these systems will be the basis for novel selective electron-transfer reactions as well as new functional materials and catalysts. The authors have drawn together the newest information on the construction of such novel redox systems using nano-space control of complexation or molecular chain-induced spaces and metal - or self-assembled spaces through combining techniques in coordination, supramolecular, and bio-inspired chemistry. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Bestandsnummer des Verkäufers 9783642067365
This is the first book to examine redox systems using the novel principle of nano-space control, one of the most exciting fields in contemporary inorganic and supramolecular chemistry. The authors review the newest research on novel redox systems, showing how they can produce hybrid conjugated systems composed of transition and synthetic metals, metallohosts, redox-active self-assembled monolayers of helical peptides, metal-assisted DNA based pairs, photoactive antibody systems, chiral rotaxanes, and redox-active imprinted polymers. In the future, these systems will be the basis for novel selective electron-transfer reactions as well as new functional materials and catalysts.
The generation of novel redox systems under nano-space control is one of the most exciting fields in present organic, inorganic, and supramolecular chemistry. The authors have drawn together the newest information on the construction of such novel redox systems using nano-space control of complexation or molecular chain-induced spaces and metal- or self-assembled spaces through combining techniques in coordination, supramolecular, and bio-inspired chemistry. Such design on the nano level produces hybrid conjugated systems composed of transition and synthetic metals, metallohosts, redox-active self-assembled monolayers of helical peptides, DNA-directed metal arrays, photoactive antibody systems, chiral rotaxanes, and redox-active imprinted polymers. In the future, these systems will be the basis for novel selective electron-transfer reactions as well as new functional materials and catalysts.
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