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Q.PtCl4⋅2KClPtCl_4 \cdot 2KCl doesn't give precipitate of AgCl with AgNO3AgNO_3 solution. Write the structural formula and IUPAC name of the complex.

CBSECBSE Class XII Board 2025Subjective· 2mImportance★★★★★
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Because PtCl4⋅2KClPtCl_4 \cdot 2KCl gives no AgClAgCl precipitate with AgNO3AgNO_3, all six chlorides are locked inside the coordination sphere as ligands around Pt4+Pt^{4+}. The complex is K2[PtCl6]K_2[PtCl_6], named potassium hexachloridoplatinate(IV).

The key to unlocking this problem lies in understanding what happens when silver nitrate meets a coordination compound. AgNO3AgNO_3 is the classic test reagent for free (ionizable) chloride ions in solution. If chlorides sit outside the coordination sphere as counter-ions, they dissociate freely in water and immediately precipitate as white AgClAgCl. But chlorides bound directly to the metal center—locked inside the square brackets of the complex—remain trapped and give no precipitate.

The formula PtCl4⋅2KClPtCl_4 \cdot 2KCl tells us we have four chlorines associated with platinum and two potassium chlorides. The experimental observation—no precipitate—means none of these six chlorides are free. They must all be coordinated to the platinum.

Building the structure

  1. Identify the metal and its oxidation state. Platinum is the central metal. Since all six chlorides are ligands (each Cl−Cl^- carries a −1-1 charge) and the two potassium ions (each K+K^+ carries a +1+1 charge) balance the charge, we can write:

2(+1)+x+6(−1)=02(+1) + x + 6(-1) = 0

where xx is the oxidation state of platinum. Solving gives x=+4x = +4. Platinum is in the +4+4 oxidation state.

  1. Construct the coordination entity.

    All six chlorides coordinate to Pt4+Pt^{4+}, forming the complex anion [PtCl6]2−[PtCl_6]^{2-}. The 2−2- charge arises because six Cl−Cl^- ligands contribute −6-6, and the metal contributes +4+4, netting −2-2.

  2. Balance with counter-ions.

    Two potassium cations, K+K^+, sit outside the coordination sphere to neutralize the 2−2- charge. The correct formula is:

K2[PtCl6]K_2[PtCl_6]

Note

The structural formula shows the coordination sphere in square brackets: K2[PtCl6]K_2[PtCl_6]. The geometry around Pt4+Pt^{4+} with six ligands is octahedral, though the question asks for the formula rather than a 3D sketch.

IUPAC nomenclature

The IUPAC system names the complex ion first (if anionic), then the counter-ion.

  1. Name the ligands. …

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