4. MO Theory Applied to Octahedral Complexes a. When MO theory is applied to octahedral complexes all the resulting MOs come with a label- bonding, antibonding, or nonbonding. Additionally, the ligands that surround the metal fall into one of three categories: o-donor only, o-donor + n-donor, and o-donor + T- acceptor. For each of the ligand subcategories, supply the label (bonding, antibonding, or nonbonding) that goes with t,, and e, energy levels encountered in CFT. 0-donor only o-donor + n-donor o-donor + n-acceptor b. Consider the following ligands: 1) phen, 2) CI, 3) en, 4) PF3, 5) CN, and 6) N(CH,)3. Place the six ligands in the appropriate box below. o-donor only o-donor + n-donor o-donor + n-acceptor
4. MO Theory Applied to Octahedral Complexes a. When MO theory is applied to octahedral complexes all the resulting MOs come with a label- bonding, antibonding, or nonbonding. Additionally, the ligands that surround the metal fall into one of three categories: o-donor only, o-donor + n-donor, and o-donor + T- acceptor. For each of the ligand subcategories, supply the label (bonding, antibonding, or nonbonding) that goes with t,, and e, energy levels encountered in CFT. 0-donor only o-donor + n-donor o-donor + n-acceptor b. Consider the following ligands: 1) phen, 2) CI, 3) en, 4) PF3, 5) CN, and 6) N(CH,)3. Place the six ligands in the appropriate box below. o-donor only o-donor + n-donor o-donor + n-acceptor
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![4. MO Theory Applied to Octahedral Complexes
a. When MO theory is applied to octahedral complexes all the resulting
MOs come with a label- bonding, antibonding, or nonbonding.
Additionally, the ligands that surround the metal fall into one of
three categories: o-donor only, o-donor + T-donor, and o-donor + n-
acceptor. For each of the ligand subcategories, supply the label
(bonding, antibonding, or nonbonding) that goes with t, and e,
energy levels encountered in CFT.
o-donor only o-donor + T-donor o-donor + n-acceptor
b. Consider the following ligands: 1) phen, 2) CI , 3) en, 4) PF3, 5)
CN, and 6) N(CH,);. Place the six ligands in the appropriate box
below.
o-donor only o-donor + n-donor o-donor + n-acceptor](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F63ef3f43-2185-4e74-a464-11c5225687b8%2F29fb644c-78c4-4f71-aced-8bce281db276%2Fiyd3nwn_processed.jpeg&w=3840&q=75)
Transcribed Image Text:4. MO Theory Applied to Octahedral Complexes
a. When MO theory is applied to octahedral complexes all the resulting
MOs come with a label- bonding, antibonding, or nonbonding.
Additionally, the ligands that surround the metal fall into one of
three categories: o-donor only, o-donor + T-donor, and o-donor + n-
acceptor. For each of the ligand subcategories, supply the label
(bonding, antibonding, or nonbonding) that goes with t, and e,
energy levels encountered in CFT.
o-donor only o-donor + T-donor o-donor + n-acceptor
b. Consider the following ligands: 1) phen, 2) CI , 3) en, 4) PF3, 5)
CN, and 6) N(CH,);. Place the six ligands in the appropriate box
below.
o-donor only o-donor + n-donor o-donor + n-acceptor
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