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Ligand
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Ligand - Taschenbuch

2009, ISBN: 6130263252, Lieferbar binnen 4-6 Wochen Versandkosten:Versandkostenfrei innerhalb der BRD

ID: 9786130263256

Internationaler Buchtitel. In englischer Sprache. Verlag: Alphascript Publishing, Paperback, 84 Seiten, L=220mm, B=150mm, H=5mm, Gew.=142gr, [GR: 16510 - HC/Chemie/Populäre Darstellungen], Kartoniert/Broschiert, Klappentext: In coordination chemistry, a ligand is an atom, ion, or molecule that binds to a central metal-atom to form a coordination complex. The bonding between metal and ligand generally involves formal donation of one or more of the ligand's electron pairs. The metal-ligand bonding can range from covalent to more ionic. Furthermore, the metal-ligand bond order can range from one to three. Ligands are viewed as Lewis bases, although rare cases are known involving Lewis acidic ligands. Metal and metalloids are bound to ligands in virtually all circumstances, although gaseous naked metal ions can be generated in high vacuum. Ligands in a complex dictate the reactivity of the central atom, including ligand substitution rates, the reactivity of the ligands themselves, and redox. Ligand selection is a critical consideration in many practical areas, including bioinorganic and medicinal chemistry, homogeneous catalysis, and environmental chemistry. Ligands are classified in many ways their charge, size, the identity of the coordinating atoms, and the number of electrons donated to the metal.The size of a ligand is indicated by its cone angle In coordination chemistry, a ligand is an atom, ion, or molecule that binds to a central metal-atom to form a coordination complex. The bonding between metal and ligand generally involves formal donation of one or more of the ligand's electron pairs. The metal-ligand bonding can range from covalent to more ionic. Furthermore, the metal-ligand bond order can range from one to three. Ligands are viewed as Lewis bases, although rare cases are known involving Lewis acidic ligands. Metal and metalloids are bound to ligands in virtually all circumstances, although gaseous naked metal ions can be generated in high vacuum. Ligands in a complex dictate the reactivity of the central atom, including ligand substitution rates, the reactivity of the ligands themselves, and redox. Ligand selection is a critical consideration in many practical areas, including bioinorganic and medicinal chemistry, homogeneous catalysis, and environmental chemistry. Ligands are classified in many ways their charge, size, the identity of the coordinating atoms, and the number of electrons donated to the metal.The size of a ligand is indicated by its cone angle

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Ligand - Miller, Frederic P. (Hrsg.) / Vandome, Agnes F. (Hrsg.) / McBrewster, John (Hrsg.)
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Miller, Frederic P. (Hrsg.) / Vandome, Agnes F. (Hrsg.) / McBrewster, John (Hrsg.):
Ligand - Taschenbuch

2009, ISBN: 9786130263256

[ED: Taschenbuch / Paperback], [PU: Alphascript Publishing], In coordination chemistry, a ligand is an atom, ion, or molecule that binds to a central metal-atom to form a coordination complex. The bonding between metal and ligand generally involves formal donation of one or more of the ligand's electron pairs. The metal-ligand bonding can range from covalent to more ionic. Furthermore, the metal-ligand bond order can range from one to three. Ligands are viewed as Lewis bases, although rare cases are known involving Lewis acidic ligands. Metal and metalloids are bound to ligands in virtually all circumstances, although gaseous naked metal ions can be generated in high vacuum. Ligands in a complex dictate the reactivity of the central atom, including ligand substitution rates, the reactivity of the ligands themselves, and redox. Ligand selection is a critical consideration in many practical areas, including bioinorganic and medicinal chemistry, homogeneous catalysis, and environmental chemistry. Ligands are classified in many ways their charge, size, the identity of the coordinating atoms, and the number of electrons donated to the metal.The size of a ligand is indicated by its cone angle, DE, [SC: 0.00], Neuware, gewerbliches Angebot, 84, Selbstabholung und Barzahlung, PayPal, offene Rechnung, Banküberweisung, Internationaler Versand

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Ligand Crystal field theory, Denticity, Chelation, Hapticity, Linkage isomerism, Bridging ligand, Metal ligand multiple bond, Non-innocent ligand, Trans-spanning ligand, Coordination complex - Miller, Frederic P. (Herausgeber); Vandome, Agnes F. (Herausgeber); McBrewster, John (Herausgeber)
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Miller, Frederic P. (Herausgeber); Vandome, Agnes F. (Herausgeber); McBrewster, John (Herausgeber):
Ligand Crystal field theory, Denticity, Chelation, Hapticity, Linkage isomerism, Bridging ligand, Metal ligand multiple bond, Non-innocent ligand, Trans-spanning ligand, Coordination complex - neues Buch

2009, ISBN: 6130263252

ID: A7710097

Kartoniert / Broschiert, mit Schutzumschlag neu, [PU:Alphascript Publishing]

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Details zum Buch
Ligand

In coordination chemistry, a ligand is an atom, ion, or molecule that binds to a central metal-atom to form a coordination complex. The bonding between metal and ligand generally involves formal donation of one or more of the ligand's electron pairs. The metal-ligand bonding can range from covalent to more ionic. Furthermore, the metal-ligand bond order can range from one to three. Ligands are viewed as Lewis bases, although rare cases are known involving Lewis acidic ligands. Metal and metalloids are bound to ligands in virtually all circumstances, although gaseous naked metal ions can be generated in high vacuum. Ligands in a complex dictate the reactivity of the central atom, including ligand substitution rates, the reactivity of the ligands themselves, and redox. Ligand selection is a critical consideration in many practical areas, including bioinorganic and medicinal chemistry, homogeneous catalysis, and environmental chemistry. Ligands are classified in many ways their charge, size, the identity of the coordinating atoms, and the number of electrons donated to the metal.The size of a ligand is indicated by its cone angle

Detailangaben zum Buch - Ligand


EAN (ISBN-13): 9786130263256
ISBN (ISBN-10): 6130263252
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2009
Herausgeber: Alphascript Publishing
84 Seiten
Gewicht: 0,142 kg
Sprache: eng/Englisch

Buch in der Datenbank seit 18.09.2009 03:04:33
Buch zuletzt gefunden am 21.11.2017 07:18:22
ISBN/EAN: 9786130263256

ISBN - alternative Schreibweisen:
613-0-26325-2, 978-613-0-26325-6


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