Chemistry · Class 12 Science
Ch 5Coordination Compounds — Class 12 Chemistry, concept-first.
The previous unit on the d- and f-block elements established that transition metals readily form a large number of complex compounds, in which a metal atom or ion is bound to a set of surrounding anions or neutral molecules through shared electron pairs.
Key concepts
Hover a concept to preview it and jump to its most relevant Q&A.
Werner Coordination Theory
Imagine you're looking at a salt like cobalt(III) chloride. The formula is written as , and when you dissolve it in water, you expect to find and ions.
Most relevant Q&A
- On the basis of the following observations made with aqueous solutions, assign secondary valences to metals in the following compounds: Form…Preview
- Write the formulas for the following coordination compounds: (a) Tetraammineaquachloridocobalt(III) chloride (b) Potassium tetrahydroxidozin…Free
- Write the IUPAC names of the following coordination compounds: (a) $[Pt(NH_3)_2Cl(NO_2)]$ (b) $K_3[Cr(C_2O_4)_3]$ (c) $[CoCl_2(en)_2]Cl$ (d)…Preview
- Write the formulas for the following coordination compounds: (i) Tetraamminediaquacobalt(III) chloride (ii) Potassium tetracyanidonickelate(…Free
- Write the IUPAC names of the following coordination compounds: (i) $[Co(NH_3)_6]Cl_3$ (ii) $[Co(NH_3)_5Cl]Cl_2$ (iii) $K_3[Fe(CN)_6]$ (iv) $…Preview
Chapter contents
The NCERT structure, section by section. Open a section to see its questions, then read the concept-first solution.
Introduction
The previous unit on the d- and f-block elements established that transition metals readily form a large number of complex compounds, in which a metal atom or ion is bound to a set of surrounding anio…
Werner's Theory of Coordination Compounds
Transition metals readily bind to a number of anions or neutral molecules through shared electron pairs, producing what are now called coordination compounds.
Definitions of Some Important Terms Pertaining to Coordination Compounds
At the heart of coordination chemistry is the coordination entity: a central metal atom or ion held together with a fixed set of surrounding ions or molecules.
Nomenclature of Coordination Compounds
A coordination compound can often be built up from a metal and a chosen set of ligands in more than one arrangement, and different arrangements — the isomers you will meet in the next section — can be…
Formulas of Mononuclear Coordination Entities
A formula is a compact way of stating what a compound is made of. For a mononuclear coordination entity — one built around a single central metal atom or ion — the formula is assembled by following a…
Naming of Mononuclear Coordination Compounds
4 QNaming a coordination compound follows the principles of additive nomenclature: every group attached to the central atom is identified individually and then listed, as a prefix, in front of the name o…
+−Worked Examplesi2 questions
- Example 5.2Write the formulas for the following coordination compounds: (a) Tetraammineaquachloridocobalt(III) chloride (b) Potassium tetrahydroxidozin…Free
- Example 5.3Write the IUPAC names of the following coordination compounds: (a) $[Pt(NH_3)_2Cl(NO_2)]$ (b) $K_3[Cr(C_2O_4)_3]$ (c) $[CoCl_2(en)_2]Cl$ (d)…Preview
+−Intext Questions 5.1-5.2i2 questions
Isomerism in Coordination Compounds
Isomers are two or more compounds that share the same chemical formula but differ in how their atoms are arranged in space.
Geometric Isomerism
Geometric (geometrical) isomerism arises in heteroleptic complexes — complexes bonded to more than one kind of ligand — because of the different geometric arrangements the ligands can adopt around the…
Optical Isomerism
Optical isomers are mirror images of one another that cannot be superimposed on one another, no matter how they are rotated in space.
Linkage Isomerism
Linkage isomerism arises in a coordination compound that contains an ambidentate ligand — a ligand which possesses more than one kind of donor atom, so that it can attach itself to the central metal t…
Coordination Isomerism
Coordination isomerism arises in a compound that is built from both a cationic coordination entity and an anionic coordination entity, each centred on a different metal.
Ionisation Isomerism
Ionisation isomerism arises when the counter ion of a complex salt — the ion lying outside the coordination sphere — is itself capable of acting as a ligand.
Solvate Isomerism
Solvate isomerism is closely related to ionisation isomerism, and takes the specific name hydrate isomerism in the particular case where the solvent involved is water.
Bonding in Coordination Compounds
Werner had already described what a coordination compound looks like — a central metal surrounded by a fixed number of ligands in a definite geometry — but his theory was silent on why this happens.
Valence Bond Theory
Valence Bond Theory pictures the formation of a coordination entity as a hybridisation event on the metal atom or ion.
Magnetic Properties of Coordination Compounds
The magnetic moment of a coordination compound can be measured experimentally through magnetic susceptibility measurements.
Limitations of Valence Bond Theory
Valence Bond Theory does a reasonably good job of accounting for the formation, geometry, and magnetic behaviour of many coordination compounds.
Crystal Field Theory
Crystal Field Theory (CFT) takes a completely different starting point from VBT. It treats the metal–ligand bond as purely electrostatic (ionic), arising from the attraction and repulsion between the…
Colour in Coordination Compounds
One of the most striking features of transition metal complexes is the sheer range of colours they display.
Limitations of Crystal Field Theory
Crystal Field Theory is, to a large extent, genuinely successful — it gives a workable account of the formation, structures, colour, and magnetic properties of coordination compounds, and it does all…
+−Intext Questions 5.5-5.10i6 questions
- 5.5Explain on the basis of valence bond theory that $[Ni(CN)_4]^{2-}$ ion with square planar structure is diamagnetic and the $[NiCl_4]^{2-}$ i…Free
- 5.6$[NiCl_4]^{2-}$ is paramagnetic while $[Ni(CO)_4]$ is diamagnetic though both are tetrahedral. Why?Free
- 5.7$[Fe(H_2O)_6]^{3+}$ is strongly paramagnetic whereas $[Fe(CN)_6]^{3-}$ is weakly paramagnetic. Explain.Preview
- 5.8Explain $[Co(NH_3)_6]^{3+}$ is an inner orbital complex whereas $[Ni(NH_3)_6]^{2+}$ is an outer orbital complex.Preview
- 5.9Predict the number of unpaired electrons in the square planar $[Pt(CN)_4]^{2-}$ ion.Preview
- 5.10The hexaquo manganese(II) ion contains five unpaired electrons, while the hexacyanoion contains only one unpaired electron. Explain using Cr…Preview
Bonding in Metal Carbonyls
A metal carbonyl is a coordination compound in which the ligand is carbon monoxide. When every ligand attached to the metal is CO, the compound is called homoleptic.
Importance and Applications of Coordination Compounds
Coordination compounds are not just a theoretical curiosity — they occur naturally across the mineral, plant and animal worlds, and they are put to deliberate use across analytical chemistry, metallur…
Summary
- Coordination entity: A central metal ion/atom bonded to a fixed number of ligands (ions/molecules) via coordinate bonds. Example: .
Exercises
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- 5.1Explain the bonding in coordination compounds in terms of Werner's postulates.Free
- 5.2$FeSO_4$ solution mixed with $(NH_4)_2SO_4$ solution in 1:1 molar ratio gives the test of $Fe^{2+}$ ion but $CuSO_4$ solution mixed with aqu…Free
- 5.3Explain with two examples each of the following: coordination entity, ligand, coordination number, coordination polyhedron, homoleptic and h…Free
- 5.4What is meant by unidentate, didentate and ambidentate ligands? Give two examples for each.Preview
- 5.5Specify the oxidation numbers of the metals in the following coordination entities: (i) $[Co(H_2O)(CN)(en)_2]^{2+}$ (ii) $[CoBr_2(en)_2]^{+}…Preview
- 5.6Using IUPAC norms write the formulas for the following: (i) Tetrahydroxidozincate(II) (ii) Potassium tetrachloridopalladate(II) (iii) Diammi…Preview
- 5.7Using IUPAC norms write the systematic names of the following: (i) $[Co(NH_3)_6]Cl_3$ (ii) $[Pt(NH_3)_2Cl(NH_2CH_3)]Cl$ (iii) $[Ti(H_2O)_6]^…Preview
- 5.8List various types of isomerism possible for coordination compounds, giving an example of each.Preview
- 5.9How many geometrical isomers are possible in the following coordination entities? (i) $[Cr(C_2O_4)_3]^{3-}$ (ii) $[Co(NH_3)_3Cl_3]$Preview
- 5.10Draw the structures of optical isomers of: (i) $[Cr(C_2O_4)_3]^{3-}$ (ii) $[PtCl_2(en)_2]^{2+}$ (iii) $[Cr(NH_3)_2Cl_2(en)]^{+}$Preview
- 5.11Draw all the isomers (geometrical and optical) of: (i) $[CoCl_2(en)_2]^{+}$ (ii) $[Co(NH_3)Cl(en)_2]^{2+}$ (iii) $[Co(NH_3)_2Cl_2(en)]^{+}$Preview
- 5.12Write all the geometrical isomers of $[Pt(NH_3)(Br)(Cl)(py)]$ and how many of these will exhibit optical isomers?Preview
- 5.13Aqueous copper sulphate solution (blue in colour) gives: (i) a green precipitate with aqueous potassium fluoride and (ii) a bright green sol…Preview
- 5.14What is the coordination entity formed when excess of aqueous $KCN$ is added to an aqueous solution of copper sulphate? Why is it that no pr…Preview
- 5.15Discuss the nature of bonding in the following coordination entities on the basis of valence bond theory: (i) $[Fe(CN)_6]^{4-}$ (ii) $[FeF_6…Preview
- 5.16Draw figure to show the splitting of d orbitals in an octahedral crystal field.Preview
- 5.17What is spectrochemical series? Explain the difference between a weak field ligand and a strong field ligand.Preview
- 5.18What is crystal field splitting energy? How does the magnitude of $\Delta_o$ decide the actual configuration of d orbitals in a coordination…Preview
- 5.19$[Cr(NH_3)_6]^{3+}$ is paramagnetic while $[Ni(CN)_4]^{2-}$ is diamagnetic. Explain why?Preview
- 5.20A solution of $[Ni(H_2O)_6]^{2+}$ is green but a solution of $[Ni(CN)_4]^{2-}$ is colourless. Explain.Preview
- 5.21$[Fe(CN)_6]^{4-}$ and $[Fe(H_2O)_6]^{2+}$ are of different colours in dilute solutions. Why?Preview
- 5.22Discuss the nature of bonding in metal carbonyls.Preview
- 5.23Give the oxidation state, d orbital occupation and coordination number of the central metal ion in the following complexes: (i) $K_3[Co(C_2O…Preview
- 5.24Write down the IUPAC name for each of the following complexes and indicate the oxidation state, electronic configuration and coordination nu…Preview
- 5.25Explain the violet colour of the complex $[Ti(H_2O)_6]^{3+}$ on the basis of crystal field theory.Preview
- 5.26What is meant by the chelate effect? Give an example.Preview
- 5.27Discuss briefly giving an example in each case the role of coordination compounds in: (i) biological systems (ii) medicinal chemistry and (i…Preview
- 5.28How many ions are produced from the complex $Co(NH_3)_6Cl_2$ in solution? (i) 6 (ii) 4 (iii) 3 (iv) 2Preview
- 5.29Amongst the following ions which one has the highest magnetic moment value? (i) $[Cr(H_2O)_6]^{3+}$ (ii) $[Fe(H_2O)_6]^{2+}$ (iii) $[Zn(H_2O…Preview
- 5.30Amongst the following, the most stable complex is (i) $[Fe(H_2O)_6]^{3+}$ (ii) $[Fe(NH_3)_6]^{3+}$ (iii) $[Fe(C_2O_4)_3]^{3-}$ (iv) $[FeCl_6…Preview
- 5.31What will be the correct order for the wavelengths of absorption in the visible region for the following: $[Ni(NO_2)_6]^{4-}$, $[Ni(NH_3)_6]…Preview
Answers to Intext Questions
These are the final answers printed at the end of the NCERT chapter. The book gives answers for some intext questions only — every question below links to our complete worked solution.
NCERT Exemplar
Higher-order thinking problems from the NCERT Exemplar.
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- Q1Which of the following complexes formed by $Cu^{2+}$ ions is most stable? (i) $Cu^{2+} + 4NH_3 \rightleftharpoons [Cu(NH_3)_4]^{2+}$, $\log…Free
- Q2The colour of the coordination compounds depends on the crystal field splitting. What will be the correct order of absorption of wavelength…Free
- Q3When 0.1 mol $CoCl_3(NH_3)_5$ is treated with excess of $AgNO_3$, 0.2 mol of $AgCl$ are obtained. The conductivity of solution will correspo…Free
- Q4When 1 mol $CrCl_3 \cdot 6H_2O$ is treated with excess of $AgNO_3$, 3 mol of $AgCl$ are obtained. The formula of the complex is: (i) $[CrCl_…Preview
- Q5The correct IUPAC name of $[Pt(NH_3)_2Cl_2]$ is (i) Diamminedichloridoplatinum (II) (ii) Diamminedichloridoplatinum (IV) (iii) Diamminedichl…Preview
- Q6The stabilisation of coordination compounds due to chelation is called the chelate effect. Which of the following is the most stable complex…Preview
- Q7Indicate the complex ion which shows geometrical isomerism. (i) $[Cr(H_2O)_4Cl_2]^{+}$ (ii) $[Pt(NH_3)_3Cl]$ (iii) $[Co(NH_3)_6]^{3+}$ (iv)…Preview
- Q8The CFSE for octahedral $[CoCl_6]^{4-}$ is $18,000\ \text{cm}^{-1}$. The CFSE for tetrahedral $[CoCl_4]^{2-}$ will be (i) $18,000\ \text{cm}…Preview
- Q9Due to the presence of ambidentate ligands coordination compounds show isomerism. Palladium complexes of the type $[Pd(C_6H_5)_2(SCN)_2]$ an…Preview
- Q10The compounds $[Co(SO_4)(NH_3)_5]Br$ and $[Co(SO_4)(NH_3)_5]Cl$ represent (i) linkage isomerism (ii) ionisation isomerism (iii) coordination…Preview
- Q11A chelating agent has two or more than two donor atoms to bind to a single metal ion. Which of the following is not a chelating agent? (i) t…Preview
- Q12Which of the following species is not expected to be a ligand? (i) $NO$ (ii) $NH_4^{+}$ (iii) $NH_2CH_2CH_2NH_2$ (iv) $CO$Preview
- Q13What kind of isomerism exists between $[Cr(H_2O)_6]Cl_3$ (violet) and $[Cr(H_2O)_5Cl]Cl_2 \cdot H_2O$ (greyish-green)? (i) linkage isomerism…Preview
- Q14IUPAC name of $[Pt(NH_3)_2Cl(NO_2)]$ is: (i) Platinum diaminechloronitrite (ii) Chloronitrito-N-ammineplatinum (II) (iii) Diamminechloridoni…Preview
- Q15Arrange the following complexes in the increasing order of conductivity of their solution: $[Co(NH_3)_3Cl_3]$, $[Co(NH_3)_4Cl_2]Cl$, $[Co(NH…Preview
- Q16A coordination compound $CrCl_3 \cdot 4H_2O$ precipitates silver chloride when treated with silver nitrate. The molar conductance of its sol…Preview
- Q17A complex of the type $[M(AA)_2X_2]^{n+}$ is known to be optically active. What does this indicate about the structure of the complex? Give…Preview
- Q18Magnetic moment of $[MnCl_4]^{2-}$ is 5.92 BM. Explain giving reason.Preview
- Q19On the basis of crystal field theory explain why Co(III) forms paramagnetic octahedral complex with weak field ligands whereas it forms diam…Preview
- Q20Why are low spin tetrahedral complexes not formed?Preview
- Q21Give the electronic configuration of the following complexes on the basis of Crystal Field Splitting theory. $[CoF_6]^{3-}$, $[Fe(CN)_6]^{4-…Preview
- Q22Explain why $[Fe(H_2O)_6]^{3+}$ has magnetic moment value of 5.92 BM whereas $[Fe(CN)_6]^{3-}$ has a value of only 1.74 BM.Preview
- Q23Arrange following complex ions in increasing order of crystal field splitting energy ($\Delta_O$): $[Cr(Cl)_6]^{3-}$, $[Cr(CN)_6]^{3-}$, $[C…Preview
- Q24Why do compounds having similar geometry have different magnetic moment?Preview
- Q25$CuSO_4 \cdot 5H_2O$ is blue in colour while $CuSO_4$ is colourless. Why?Preview
- Q26Name the type of isomerism when ambidentate ligands are attached to central metal ion. Give two examples of ambidentate ligands.Preview
- Q27Using crystal field theory, draw energy level diagram, write electronic configuration of the central metal atom/ion and determine the magnet…Preview
- Q28Using valence bond theory, explain the following in relation to the complexes given below: $[Mn(CN)_6]^{3-}$, $[Co(NH_3)_6]^{3+}$, $[Cr(H_2O…Preview
- Q29$CoSO_4Cl \cdot 5NH_3$ exists in two isomeric forms 'A' and 'B'. Isomer 'A' reacts with $AgNO_3$ to give white precipitate, but does not rea…Preview
- Q30What is the relationship between observed colour of the complex and the wavelength of light absorbed by the complex?Preview
- Q31Why are different colours observed in octahedral and tetrahedral complexes for the same metal and same ligands?Preview
- Q32Atomic number of Mn, Fe and Co are 25, 26 and 27 respectively. Which of the following inner orbital octahedral complex ions are diamagnetic?…Preview
- Q33Atomic number of Mn, Fe, Co and Ni are 25, 26, 27 and 28 respectively. Which of the following outer orbital octahedral complexes have same n…Preview
- Q34Which of the following options are correct for $[Fe(CN)_6]^{3-}$ complex? (i) $d^2sp^3$ hybridisation (ii) $sp^3d^2$ hybridisation (iii) par…Preview
- Q35An aqueous pink solution of cobalt(II) chloride changes to deep blue on addition of excess of HCl. This is because ____________. (i) $[Co(H_…Preview
- Q36Which of the following complexes are homoleptic? (i) $[Co(NH_3)_6]^{3+}$ (ii) $[Co(NH_3)_4Cl_2]^{+}$ (iii) $[Ni(CN)_4]^{2-}$ (iv) $[Ni(NH_3)…Preview
- Q37Which of the following complexes are heteroleptic? (i) $[Cr(NH_3)_6]^{3+}$ (ii) $[Fe(NH_3)_4Cl_2]^{+}$ (iii) $[Mn(CN)_6]^{4-}$ (iv) $[Co(NH_…Preview
- Q38Identify the optically active compounds from the following: (i) $[Co(en)_3]^{3+}$ (ii) trans-$[Co(en)_2Cl_2]^{+}$ (iii) cis-$[Co(en)_2Cl_2]^…Preview
- Q39Identify the correct statements for the behaviour of ethane-1,2-diamine as a ligand. (i) It is a neutral ligand. (ii) It is a didentate liga…Preview
- Q40Which of the following complexes show linkage isomerism? (i) $[Co(NH_3)_5(NO_2)]^{2+}$ (ii) $[Co(H_2O)_5CO]^{3+}$ (iii) $[Cr(NH_3)_5SCN]^{2+…Preview
- Q41Match the complex ions given in Column I with the colours given in Column II and assign the correct code: Column I (Complex ion): A. $[Co(NH…Preview
- Q42Match the coordination compounds given in Column I with the central metal atoms given in Column II and assign the correct code: Column I (Co…Preview
- Q43Match the complex ions given in Column I with the hybridisation and number of unpaired electrons given in Column II and assign the correct c…Preview
- Q44Match the complex species given in Column I with the possible isomerism given in Column II and assign the correct code: Column I (Complex sp…Preview
- Q45Match the compounds given in Column I with the oxidation state of cobalt present in it (given in Column II) and assign the correct code: Col…Preview
- Q46Assertion: Toxic metal ions are removed by the chelating ligands. Reason: Chelate complexes tend to be more stable. (i) Assertion and reason…Preview
- Q47Assertion: $[Cr(H_2O)_6]Cl_2$ and $[Fe(H_2O)_6]Cl_2$ are reducing in nature. Reason: Unpaired electrons are present in their d-orbitals. (i)…Preview
- Q48Assertion: Linkage isomerism arises in coordination compounds containing ambidentate ligand. Reason: Ambidentate ligand has two different do…Preview
- Q49Assertion: Complexes of $MX_6$ and $MX_5L$ type (X and L are unidentate) do not show geometrical isomerism. Reason: Geometrical isomerism is…Preview
- Q50Assertion: $[Fe(CN)_6]^{3-}$ ion shows magnetic moment corresponding to two unpaired electrons. Reason: Because it has $d^2sp^3$ type hybrid…Preview
CBSE Sample Papers
Questions from official CBSE sample papers.
+−Show 3 questionsHide questions3 questions
- Q1Assertion (A) : Linkage isomerism arises in coordination compounds because of ambidentate ligand. Reason (R) : Ambidentate ligand like $NO_2…Preview
- Q2Write the coordination isomer of $[Cu(NH_3)_4][PtCl_4]$.Preview
- Q3Write IUPAC name for each of the following complexes : (i) $[Ni(NH_3)_6]Cl_2$ (ii) $K_3[Fe(CN)_6]$ (iii) $[Co(en)_3]^{3+}$Preview