i s ( cem 2004. ( th ,(4 istry les(en(( es( · pdf files ! i" "• ds(•...

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Today’s Topics!Coordination Chemistry II Ligands Naming coordination compounds Valence bond theory and bonding in coordination compounds Related Problems from Spring 2008 Final Exam: 34 & Spring 2009 Final Exam: 33 Corresponding Connect Problems: Set 9: 8, 9, 10, 13 Figures and tables taken from Chemistry,4 th ed. by J. McMurray and R. C. Fay, PrenticeMHall, 2004. All materials are © 2012–2013 Lynmarie A. Posey and Michigan State University unless otherwise noted; all rights reserved. 2 Learning Objectives (Lecture 24) You should: 1. understand what linkage isomerism is and be able to identify ambidentate ligands. 2. be able classify ligands as monodentate, bidentate, tridentate, tetradentate, or hexadentate. 3. know how to name coordination compounds and be able to write formulas for coordination compounds based on names. 4. be prepared to apply the effective atomic number rule to understand bonding in coordination compounds. 5. be able to apply valence bond theory to predict transition metal hybridization and geometries in coordination compounds. 6. understand the significance of the spectrochemical series in terms of how it applies to the strength of ligand bonding and the splitting of transitionMmetal d orbitals.

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Page 1: I s ( ceM 2004. ( th ,(4 istry les(en(( es( · PDF files ! I" "• ds(• s(• pounds(((((3(g(t( (13 (((les(en((istry,(4 th ( ceM 2004. ... ( ( 3 (sm" "e( (bd((((N O!! ( H3) 5 NO

Today’s(Topics!Coordination)Chemistry)II" "• Ligands(

• Naming(coordination(compounds(

• Valence(bond(theory(and(bonding(in(coordination(compounds(

(

(

(

(

Related(Problems(from(Spring(2008(Final(Exam:(34(&(Spring(2009(Final(Exam:(33(

Corresponding(Connect(Problems:(Set(9:(8,(9,(10,(13 (

(

(Figures(and(tables(taken(from(Chemistry,(4th(ed.(by(J.(McMurray(and(R.(C.(Fay,(PrenticeMHall,(2004.(All,materials,are,©,2012–2013,Lynmarie,A.,Posey,and,Michigan,State,University,unless,otherwise,noted;,all,rights,reserved.,

(

( ( (2(

Learning(Objectives((Lecture(24)" You(should:(

1. understand(what(linkage(isomerism(is(and(be(able(to(identify(ambidentate(ligands.(

2. be(able(classify(ligands(as(monodentate,(bidentate,(tridentate,(tetradentate,(or(hexadentate.(

3. know(how(to(name(coordination(compounds(and(be(able(to(write(formulas(for(coordination(compounds(based(on(names.(

4. be(prepared(to(apply(the(effective(atomic(number(rule(to(understand(bonding(in(coordination(compounds.(

5. be(able(to(apply(valence(bond(theory(to(predict(transition(metal(hybridization(and(geometries(in(coordination(compounds.(

6. understand(the(significance(of(the(spectrochemical(series(in(terms(of(how(it(applies(to(the(strength(of(ligand(bonding(and(the(splitting(of(transitionMmetal(d(orbitals.(

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( ( (3(

Linkage(Isomerism" "Some(ligands(have(more(than(one(atom(with(a(lone(pair(of(electrons(available(to(form(a(coordinate(bond(with(a(transition(metal.(The(compound(formed(and(its(properties(depend(on(which(atom(coordinates(to(the(metal.((

Ex:(NO!!((nitrite)(in(the(compounds([Co(NH3)5NO2]Cl2((pentaamminenitrocobalt(III)(chloride,(mustard(color)(and([Co(NH3)5ONO]Cl2(pentaamminenitritocobalt(III)(chloride,(dark(orange).((

When(ligands(can(coordinate(by(more(than(one(atom,(they(are(called(ambidentate.(Ex:(SCN:!((isothiocyanate,(coordinates(using(N)(vs.(: SCN!((thiocyanate,(coordinates(using(S)(

(

(FigureMMcMurray(&(Fay)(

(

( ( (4(

Ligands" "Ligands(are(classified(based(on(the(number(of(electron(pairs(with(which(they(coordinate(to(the(metal.(

Monodentate"• coordinate(through(a(single(electron(pair((FigureMMcMurray(&(Fay)(

(The(ligands(CN!((cyanideMcoordinates(using(C(vs.(isocyanideMcoordinates(using(N)(and(SCN!((thiocyanate(vs.(isothiocyanate)(are(ambidentate.(While(CO(has(two(available(pairs(of(electrons,(CO(bonds(preferentially(to(transition(metals(via(the(lone(pair(on(the(less(electronegative(C(atom.(

( (

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(

( ( (5(

Bidentate"• coordinate(through(two(electron(pairs(on(different(donor(atoms((FigureMMcMurray(&(Fay)(

(( (

(

( ( (6(

• The(polydentate(ligands(often(serve(as(chelating,agents(and(form(chelates((complexes(formed(by(a(polydentate(ligand(and(a(single(metal).(The(term(chelate(is(derived(from(the(Greek(word(“chele,”(which(means(claw.(

Note:(Some(ligands,(such(as(: SCN:!,(which(have(more(than(one(lone(pair(of(electrons(can(behave(as(bidentate(ligands;(however,(they(cannot(chelate(because(the(distance(between(the(two(donor(atoms(is(not(large(enough(to(permit(the(ligand(to(bond(to(two(coordination(sites(on(the(same(metal.(: SCN:!(can(only(act(as(a(bidentate(ligand(when(bridging(between(two(transitionMmetal(atoms.(

Tridentate"• coordinates(through(three(donor(atoms(

( (

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(

( ( (7(

Tetradentate"• coordinates(through(four(donor(atoms(

• interesting(tetradentate(ligands,(such(as(porphyrins,(are(macrocyclic(

When(the(porphyrin(coordinates(to(the(metal,(the(H(atoms(bonded(to(two(of(the(four(coordinating(N(atoms(are(lost.((FigureMMcMurray(&(Fay)(

( (

(

( ( (8(

Hexadentate"• coordinates(through(six(donor(atoms((FigureMMcMurray(&(Fay)(

(

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( ( (9(

Naming'Coordination'Compounds" "Rules"1. When(the(compound(is(a(salt,(name(the(cation(first.(

2. Name(the(ligands(in(alphabetical(order.(

3. If(the(ligand(is(an(anion,(change(the(ending(to(Mo((TableMMcMurray(&(Fay)(

–ite(to(–ito/(–ate(to(–ato/(–ide(to(–o(

(

( ( (10(

4. If(the(ligand(is(neutral,(use(its(ordinary(name(except(for(

water(is(called(aqua(

ammonia(is(called(ammine(

carbon(monoxide(is(called(carbonyl(

5. Indicate(the(number(of(ligands(by(the(prefixes(

two:(di(or(bis(

three:(tri(or(tris(

four:(tetra(or(tetrakis(

five:(penta(or(pentakis(

six:(hexa(or(hexakis(The(second(prefix(given(is(used(when(confusion(would(result(from(using(the(simpler((first)(prefix.(When(the(prefixes(from(the(second(group(are(used,(the(name(of(the(ligand(is(enclosed(in(parentheses.(

( (

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(

( ( (11(

6. If(the(complex(is(anionic,(add(the(suffix(Mate(to(the(metal.((TableMMcMurray(&(Fay)(

7. Denote(the(oxidation(state(of(the(metal(by(Roman(numerals(in(parentheses(following(the(name(of(the(metal.(

8. Waters(of(crystallization(•n(H2O(are(specified(at(the(end(of(the(name(with(the(appropriate(prefix(to(indicate(the(number(of(water(molecules(per(formula(unit(followed(by(hydrate.(

(

( ( (12(

Example:)Naming)Coordination)Compounds" 1. Name(the(following(coordination(compounds:(

(a) Na2[Pt(CN)4](

(

(b) K3[Fe(C2O4)3]•3H2O(

(

(c) [Fe(OH)(H2O)5](NO3)2(

(

(d) [Co(NH3)4(CH3NH2)2]Br3(

(

2. Write(formulas(for(the(following(coordination(compounds:(

(a) hexaamminenickel(II)(sulfate(

(

(b) sodium(tetrachlorocuprate(II)(

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(

( ( (13(

Bonding'in!Transition)Metal)Complexes" N."V."Sidgewick"and"Lowry’s"Effective"Atomic"Number"(EAN)"Rule"• application(of(Lewis’(ideas((octet(rule)(to(coordination(compounds(

• Since(ligands(are(Lewis(bases,(they(contribute(a(pair(of(electrons(for(each(bond(formed(with(the(transitionMmetal(ion.(Stable,coordination,compounds,are,formed,when,the,compound,achieves,a,nobleFgas,configuration,about,the,metal,ion,,giving,rise,to,the,effective,atomic,number,rule.(In(other(words,(when(the(number(of(electrons(in(the(transitionMmetal(ion(plus(the(number(contributed(by(the(ligands(adds(up(to(36((Kr),(54((Xe),(or(86((Rn),(the(compound(is(especially(stable.(

• most(useful(for(predicting(stable(organometallic(compounds(

• unfortunately,(many(exceptions(

(

( ( (14(

Application*of*the$Effective(Atomic(Number(Rule" Coordination"Compounds:"Find(number(of(ligands(coordinated(with(the(transition(metal.(

Co(III)(+(NH3(

(

(

(

(

(

Ag(I)(+(NH3(

( "

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(

( ( (15(

Organometallic"Compounds"Find(the(oxidation(state(of(the(transition(metal(in(these(compounds(and(the(charge(on(the(coordination(complex.(

[Ni(CO)4](

(

(

(

(

(

[Mn(CO)5](

(

( ( (16(

Valence&Bond&Theory&&&Transition!metal%Complexes" "Orbitals(on(the(transition(metal(that(accept(electrons(from(the(ligands(are(hybridized.(

Hybridization( #,of,Charge,Clouds( Shape(

sp( 2( linear(

sp2( 3( trigonal(planar(

sp3( 4( tetrahedral(

dsp2( 4( square(planar(

dsp3( 5( trigonal(bipyramidal(or(square(pyramid(

d2sp3( 6( octahedral(

d4sp( 6( trigonal(prism(

d3sp3( 7( capped(ocatahedral(

d5p3( 8( square(antiprism(

d5sp3( 9( tricapped(trigonal(prism(

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(

( ( (17(

Application*of*Valence*Bond*Theory" "Apply(valence(bond(theory(to(predict(hybridization(and(geometries(for(the(following(coordination(complexes:(

Cr(CO)6((diamagneticMall(electrons(on(metal(paired)(

(

(

(

(

(

(

[NiCl!]!!((paramagneticMunpaired(electrons(on(metal)((

(( (

(

( ( (18(

[Ni(CN)!]!!((diamagnetic)((

(

(

(

(

(

(

[CoF!]!!((paramagnetic,(highMspin(or(spinMfree)((

( (

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( ( (19(

[Co(NH!)!]!!((diamagnetic,(lowMspin(or(spinMpaired)((

(

(

(

(

(

(

(

(

(

(

Note:(Pairing(of(electrons(requires(energy.(In(the(diamagnetic(compounds,(the(pairing(energy(is(supplied(by(the(energy(released(in(bond(formation.(Because(NH!(and(CN!(form(stronger(bonds(than(!!(and(!"!(there(is(enough(energy(released(to(supply(the(energy(for(electron(pairing.(

(

( ( (20(

Strength(of(Bonds(&(the$Spectrochemical-Series" "Overview"of"the"strength"of"bonds"formed"by"ligands"based"on"donor"atom"( strongest !!!!!! > ! > ! > X! halide!ion !!!!!(weakest)(

(

Spectrochemical"Series"• based(on(measurements(of(the(absorption(spectra(of(coordination(compounds.(Stronger(ligands(cause(a(larger(splitting(of(the(dMorbitals.(

• strength(of(ligand(determined(from(spectrochemical(series(correlates(with(the(strength(of(bonds(formed(by(the(ligand(with(transition(metals(

(strongFfield,ligands)(CO(>(CN!(>(en(>(NH3(>(|(H2O(>(C!O!!!(>(OH!(>(F!(>(Cl!(>((Br!(>(I!((weakFfield,ligands)(