(d) porphine, often used in supermolecular chemistry as well as catalysis; biologically, porphine is the basis for many different types of porphyrin-containing proteins, including heme proteins NH HN-

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter8: Bonding In Transition Metal Compounds And Coordination Complexes
Section: Chapter Questions
Problem 70AP
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only option D, thanks
How many bonds could each of the following chelating ligands form with a metal ion?
(a) acetylacetone, a common ligand in organometaillic catalysts
CH3
-C-CH2-C- CH3
(b) diethylenetriamine, used in a variety of industrial processes
NH2-CH2-CH2-NH-CH2-CH2-NH2
(c) salen, a common ligand for chiral organometallic catalysts
OH
Но
(d) porphine, often used in supermolecular chemistry as well as catalysis; biologically, porphine is the basis for many different types of porphyrin-containing
proteins, including heme proteins
NH
N-
N-
HN-
Transcribed Image Text:How many bonds could each of the following chelating ligands form with a metal ion? (a) acetylacetone, a common ligand in organometaillic catalysts CH3 -C-CH2-C- CH3 (b) diethylenetriamine, used in a variety of industrial processes NH2-CH2-CH2-NH-CH2-CH2-NH2 (c) salen, a common ligand for chiral organometallic catalysts OH Но (d) porphine, often used in supermolecular chemistry as well as catalysis; biologically, porphine is the basis for many different types of porphyrin-containing proteins, including heme proteins NH N- N- HN-
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