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Q.Why are Zn2+Zn^{2+} salts white while Cu2+Cu^{2+} salts are blue?

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2018Subjective· 1mImportance★★★★★
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Colour in transition-metal compounds arises from d–d electronic transitions, which require a partially filled d subshell; Zn2+Zn^{2+}'s d-subshell is completely filled so no such transition is possible, whereas Cu2+Cu^{2+}'s is not.

The electronic configuration of ZnZn is [Ar]3d104s2[Ar]3d^{10}4s^2; on forming Zn2+Zn^{2+}, both 4s4s electrons are lost, giving [Ar]3d10[Ar]3d^{10} — a completely filled d-subshell.

Colour in transition metal ions typically arises from d–d transitions: an electron in a lower-energy d-orbital absorbs a photon of visible light and is excited to a higher-energy d-orbital (the d-orbitals having been split into two sets by the ligand field, as in crystal field theory). For such a transition to occur, there must be both an occupied d-orbital to excite an electron from, and a vacant (or partially filled) d-orbital in the higher-energy set to excite it into.

Since Zn2+Zn^{2+} has all 10 d-electrons filling every d-orbital completely, there is no vacant d-orbital available to receive an excited electron — no d–d transition is possible, so Zn2+Zn^{2+} salts are white/colourless.

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