Bridging or Terminal CO.ppt
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1、Bridging or Terminal CO,Terminal CO bonding at 2021.5 cm-1 and 1975.7 cm-1 also, because of very small symmetry differences between carbon monoxides.,Terminal CO bond1887 cm-1 Bridging CO bond at 1770 cm-1,Bonding in TM Carbonyls,CO bonding-the orbital picture,10 valence electrons C (4), O(6),C,O,HO
2、MO,A cartoon of M-CO bonding.,The HOMO in carbon monoxide is the high energy NB which is primarily derived from a carbon 2p orbital. This means a lone pair of electrons is residing on the C atom. The LUMO on CO is the *2p which are antibonding orbitals with significant 2p character. CO acts as a Lew
3、is Base and a Lewis Acid.The back bond appearing in this systems is known as a synergistic effect.,Reactions of Metal Carbonyls.,i) Substitution of CO by other L (L is often a -acid or Soft Lewis base; L= PR3, polyolefins, SR2, CH3CN),Recall that TM carbonyls obey the 18 electron rule. This means tw
4、o things. They are inert toward substitution. Reactions must proceed via a Dissociative mechanism (via M-CO bond cleavage),This provides a basis for photochemistry:,If light of a suitable energy is supplied such that * can occur some interesting things happen.,M-CO Photochemistry,Bond Order = 1/2 (e
5、lectrons in bonding orbitals - electrons in anti-bonding orbitals),B.O.= 0 This negates the M-CO bond.,CO is photoejected!,LnM-CO18 electrons,LnM16 electrons High energy reactive intermediate.,hvslow - CO,Lfast,LnM L18 electrons,In theory, by filtering the excitation light it should be possible to r
6、emove only 1 CO.This is not simple given the broad nature of the UV-vis bands.,E390nm,M-CO photochemistry Examples,hv, 370nmL,3 LRu(CO)4,(L= olefin),Orange, colour arises from *(Ru-Ru) 390nm,Another example involving Fe and an 18 electron transition state,18 electrons alkyne 2e- donor,hv- CO,18 elec
7、trons alkyne 4e- donor,This intermediate is not 16e- and is stabilized by a 4e- donor alkyne. It substitutes 1013x faster than Fe(CO)5.,L,Reduction of TM Carbonyls,What will happen if electrons are added to 18e- TM carbonyls?,High energy 19 or 20 electron systems will result and CO will be ejected.
8、(This can be viewed as the two electrons taking the place of the CO or breaking M-M bonds),Fe(CO)42-,2Mn(CO)5-,2Na/Hg,2Na/Hg,These anions are of significant importance. They are nucleophiles and react further to form M-C and M-H bonds.,Mn(CO)5-,RX,A,Formation of M-H and M-C bonds,B,RCOX,The differen
9、ce between A and B is the presence of CO between M and R.,CO and heat,Empty bonding site.,This is referred to as “CO insertion” although the mechanism involves migration of R.,Mn(CO)5- + H+ H-Mn(CO)5-,Collmans Reagent,Application of “carbonylmetallates” in organic synthesis.,Na2Fe(CO)4,Disodium tetr
10、acarbonylferrate is useful in the functionalization of organic halides.,RD,RX,D+,RX,RCOCl,CO,RX,O2,O2,X2,X2,ROH,H2O,HNR2,Oxidation of TM Carbonyls,Oxidation weakens the M-CO or M-M bonds and results in CO elimination or M-M cleavage with the formation of TM carbonyl halides.,18 electrons,Special Cas
11、e. Oxidative Addition (4-coordinate Vaskas Compound 1961, 16 electron species),H2,RX,Ir(I), d8, 16e-,Ir(III), d6, 18e-,(activation of H2),Reactions of Coordinated M-CO,The attachment of CO to a TM makes the C electrophillic and may be attacked by a nucleophile),This is a carbene complex; E.O. Fische
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