Cobalt(II) forms more tetrahedral complexes than any other ion except zinc(II). Draw the structure(s) of the tet- rahedral complex [CoCl;(en)]. Could this complex exhibit geometric or optical isomerism? If one of the Cl¯ ligands is replaced by Br¯, what kinds of isomerism, if any, are possible in the resulting compound?

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
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Cobalt(II) forms more tetrahedral complexes than any
other ion except zinc(II). Draw the structure(s) of the tet-
rahedral complex [CoCl;(en)]. Could this complex exhibit
geometric or optical isomerism? If one of the Cl¯ ligands
is replaced by Br¯, what kinds of isomerism, if any, are
possible in the resulting compound?
Transcribed Image Text:Cobalt(II) forms more tetrahedral complexes than any other ion except zinc(II). Draw the structure(s) of the tet- rahedral complex [CoCl;(en)]. Could this complex exhibit geometric or optical isomerism? If one of the Cl¯ ligands is replaced by Br¯, what kinds of isomerism, if any, are possible in the resulting compound?
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