Knowing that NH3 is a stronger ligand than H2O that can result in larger "DE" of the split d-orbitals when complexed with a metal cation, such as Cu2+, we can predict that, the absorption wavelength of a [Cu(NH3)6]2+ complex would be lower (higher / lower) than the absorption wavelength of a [Cu(H2O)6]2+ complex. Both absorptions are expected to happen in the range of the EM spectrum.

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter20: Chemistry Of Selected Transition Elements And Coordination Compounds
Section: Chapter Questions
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Knowing that NH3 is a stronger ligand than H2O that can result in larger "DE" of the split
d-orbitals when complexed with a metal cation, such as Cu2+, we can predict that, the
absorption wavelength of a [Cu(NH3)6]2+ complex would be lower (higher / lower)
than the absorption wavelength of a [Cu(H2O)6]2+ complex. Both absorptions are
expected to happen in the
range of the EM spectrum.
Transcribed Image Text:Knowing that NH3 is a stronger ligand than H2O that can result in larger "DE" of the split d-orbitals when complexed with a metal cation, such as Cu2+, we can predict that, the absorption wavelength of a [Cu(NH3)6]2+ complex would be lower (higher / lower) than the absorption wavelength of a [Cu(H2O)6]2+ complex. Both absorptions are expected to happen in the range of the EM spectrum.
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