Coordination polymers are made when a bidentate ligand acts as a bridge between different metal ions. Under certain conditions $$\(\mathrm{Ru}^{3+}(\mathrm{aq})\)$$ and the bidentate ligand dps can form a coordination polymer containing $$\(\left(\left[\mathrm{Ru}(d p s) \mathrm{Cl} l_{4}\right]^{-}\right)_{n}\)$$ chains. The bidentate ligand dps uses each of the nitrogen atoms to bond to a different $$\(\mathrm{Ru}^{3+}\)$$. Complete Fig. 2.3 by drawing the structure for the coordination polymer $$\(\left(\left[\mathrm{Ru}(d p s) \mathrm{Cl}_{4}\right]^{-}\right)_{n}\)$$. Show two repeat units.
Exam No:9701_s24_qp_41 Year:2024 Question No:2(f)
Answer:

Knowledge points:
28.4.1.1 geometrical (cis-trans) isomerism,
28.4.1.2 optical isomerism,
28.4.2 deduce the overall polarity of complexes such as those described in 28.4.1(a) and 28.4.1(b)
Solution:
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