Draw the expected molecular structures for each of the complexes/complex ions (a) - (c) below. Systematically classify each of the complexes according to Green's MLX method, by first designating each ligand, and then the compound. Indicate the oxidation state of the metal and the electron number (EN) of the complex in each case. a) a)NH4[Ni(CO)Cl3] b)[Ni(CO)2(NAd ₂)]PF6 c)[Ni(CO)3(NMe₂)]BF4

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Chapter20: Transition Metals And Coordination Chemistry
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Problem 6Q: Four different octahedral chromium coordination compounds exist that all have the same oxidation...
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Draw the expected molecular
structures for each of the
complexes/complex ions (a) -(c) below.
Systematically classify each of the
complexes according to Green's MLX
method, by first designating each
ligand, and then the compound.
Indicate the oxidation state of the
metal and the electron number (EN) of
the complex in each case.
a)
a)NH4[Ni(CO)Cl3]
b)[Ni(CO)2(NAD₂)]PF6
c)[Ni(CO)3(NMe2)]BF4
b)Indicate what types of reactions you
expect each class of compounds to
undergo, by referring to the change in
electron number, valency number and
ligand bond number for
each class of complexes.
09:37 AM
Transcribed Image Text:Draw the expected molecular structures for each of the complexes/complex ions (a) -(c) below. Systematically classify each of the complexes according to Green's MLX method, by first designating each ligand, and then the compound. Indicate the oxidation state of the metal and the electron number (EN) of the complex in each case. a) a)NH4[Ni(CO)Cl3] b)[Ni(CO)2(NAD₂)]PF6 c)[Ni(CO)3(NMe2)]BF4 b)Indicate what types of reactions you expect each class of compounds to undergo, by referring to the change in electron number, valency number and ligand bond number for each class of complexes. 09:37 AM
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