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Q.Draw structures of geometrical isomers of [Fe(NH3)2(CN)4]−[Fe(NH_3)_2(CN)_4]^-.

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2025Subjective· 1mImportance★★★★★
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This octahedral MA2B4MA_2B_4 complex can arrange its two identical NH3NH_3 ligands either adjacent to each other (cis) or directly opposite each other (trans), giving two geometrical isomers.

Identifying the isomerism

[Fe(NH3)2(CN)4]−[Fe(NH_3)_2(CN)_4]^- is an octahedral complex of the general type [MA2B4][MA_2B_4], where A=NH3A = NH_3 (2 ligands) and B=CN−B = CN^- (4 ligands). This type of complex shows cis–trans (geometrical) isomerism depending on the relative positions of the two AA (NH3NH_3) ligands.

cis-isomer: Picture an octahedron with the six positions labelled +x,−x,+y,−y,+z,−z+x,-x,+y,-y,+z,-z. In the cis isomer, the two NH3NH_3 ligands occupy adjacent positions, i.e. at 90∘90^\circ to each other (e.g. one NH3NH_3 at +z+z and the other at +x+x), with the four CN−CN^- ligands occupying the remaining four positions (−z,−x,+y,−y-z, -x, +y, -y).

trans-isomer: In the trans isomer, the two NH3NH_3 ligands occupy diametrically opposite positions, i.e. at 180∘180^\circ to each other (e.g. one at +z+z and the other at −z-z), with all four CN−CN^- ligands occupying the equatorial plane (+x,−x,+y,−y+x, -x, +y, -y).

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