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Octahedral Field
x 2 -y 2
z 2
xy
xz
yz In Octahedral Field
configuration is unstable, and the system undergo distortion to remove the degeneracy .’ Examples: [Cu(NH 3
6
2+
t
o t
o For the same metal and ligands and the same internuclear distances Crystal field splitting favors the formation of octahedral complexes Since
I-^ Br- S2- SCN- Cl- NO 3 - F-^ C 2 O 4 2- H 2 O NCS- CH 3 CN NH 3 en bipy phen NO 2 - PPh 3 CN- CO Weak Field Strong Field
Crystal Field SplittingCrystal Field Splitting Energy (CFSE)Energy (CFSE)
d 4 Strong field = Low spin (2 unpaired) Weak field = High spin (4 unpaired) P < o
o When the 4 th electron is assigned it will either go into the higher energy eg orbital at an energy cost of o or be paired at an energy cost of P , the pairing energy. Coulombic repulsion energy and exchange energy
[Mn(CN) 6 ]3- Strong field Complex total spin (S) is 2 ½ = 1 Low Spin Complex Ground-state Electronic Configuration, Magnetic Properties [Mn(H 2 O) 6 ]3+ Weak Field Complex the total spin (S) is 4 ½ = 2 High Spin Complex Weak field d 4 Strong field d 4