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Ligands are broadly classified into two ...

Ligands are broadly classified into two classes classical and non-classical ligands, depending on their donor annd acceptor ability. Classical ligands form classical complexes while non-classical ligands form non-classical complex. Bonding mechanism in non-classical is called synergic bonding.
Q. Synergic bonding is absent in:

A

`[Mo(CO)_(6)]`

B

`[Cr(CO)_(3)(B_(3)N_(3)H_(6)]`

C

`[Sc(CO)_(6)]^(3+)`

D

`[Ni(CN)_(4)]^(4-)`

Text Solution

Verified by Experts

The correct Answer is:
C

`overset(+III)(Sc):3d^(@)4s^(@)`, as d-orbitals at `overset(+III)(Sc)` are empty, hence, there is no synergic bonding in `[Sc(CO)_(6)]^(3+)`.
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Ligands are broadly classified into two classes classical and non-classical ligands, depending on their donor annd acceptor ability. Classical ligands form classical complexes while non-classical ligands form non-classical complex. Bonding mechanism in non-classical is called synergic bonding. Q. Which is not pi -acceptor ligand?

Ligands are broadly classified into two classes classical and non-classical ligands, depending on their donor annd acceptor ability. Classical ligands form classical complexes while non-classical ligands form non-classical complex. Bonding mechanism in non-classical is called synergic bonding. Q. In compound [M(CO)_(n)]^(x) , the correct match for highest 'M-C' bond length for given M, n and z respectively:

Which of the following chemical can act as non-classical ligand(s) ?

coordination compounds introduction| transition elements|classification of ligand|classical and non classical ligand

Ambidentate ligand || Flexidentate Ligands || Classical and Non-Classical Ligands || π-Donor and π-Acceptor Ligands || Oxidation Number

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