Reactions of bis(pentafluorophenyl)borane with Cp2Ta(=CH2)CH3:: Generation and trapping of tantalocene borataalkene complexes

被引:46
作者
Cook, KS
Piers, WE
Woo, TK
McDonald, R
机构
[1] Univ Calgary, Dept Chem, Calgary, AB T2N 1N4, Canada
[2] Univ Western Ontario, Dept Chem, London, ON N6A 5B7, Canada
[3] Univ Alberta, Dept Chem, Xray Struct Lab, Edmonton, AB T6G 2G2, Canada
关键词
D O I
10.1021/om010373o
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Reaction of Cp2Ta(=CH2)(3) with 2 equiv of HB(C6F5)(2) results in production of the dihydride Cp2Ta(CH2B(C6F5)(2))(mu -H)(H), 1, plus 1 equiv of H3CB(C6F5)(2). The pathway to 1 involves stepwise attack of borane first at the methylene group, followed by attack at the methyl group, which undergoes alkyl/hydride exchange with the second equivalent of HB(C6F5)(2). The product of HB(C6F5)(2) addition to the methylene ligand, methyl hydride complex Cp2Ta(CH2B(C6F5)(2))(mu -H)(CH3), 2, can be intercepted by carrying out the reaction in hexane at low temperature, a medium in which it is nearly totally insoluble. This complex eliminates methane at higher temperatures in a first-order decomposition process (DeltaH(double dagger) = 20.4(5) kcal mol(-1) and DeltaS(double dagger) = -2.0(2) cal mol(-1) K-1). The product, a borataalkene complex formulated as Cp2Ta[CH2B(C6F5)(2)], 3, is unstable and cannot be isolated. DFT calculations support its formulation and show that it is present as a singlet/triplet mixture, accounting for the observed paramagnetism of solutions containing 3. While 3 cannot be isolated or spectroscopically probed, it can be trapped if 2 is allowed to decompose in the presence of (BuNC)-Bu-t or CO, giving the products Cp2Ta[eta (2)-CH2B(C6F5)(2)](L) (L = (BuNC)-Bu-t, 4; CO, 5). Both of these compounds have been structurally characterized, and the structural and spectroscopic data for these compounds support an eta (2) bonding description for the borataalkene ligand which is reminiscent of the commonly held Dewar-Chatt-Duncanson model for alkene bonding to transition metals. DFT calculations on 5 and the model complex Cp2Ta[eta (2)-CH2BH2](CO), 6, provide further support for this description. The facile conversion of this ligand from an eta (2) to an eta (1) bonding mode is proposed to account for some H/D exchange processes observed in both dihydride I and methyl hydride complex 2. Plausible mechanisms for both of these processes are proposed.
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页码:3927 / 3937
页数:11
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共 81 条
[11]   Theoretical study of the hydrogen exchange coupling in the metallocene trihydride complexes [(C5H5)(2)MH(3)](n+) (M=Mo, W, n=1; M=Nb, Ta, n=0) [J].
Camanyes, S ;
Maseras, F ;
Moreno, M ;
Lledos, A ;
Lluch, JM ;
Bertran, J .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1996, 118 (19) :4617-4621
[12]   POLYFLUOROARYL ORGANOMETALLIC COMPOUNDS .2. PENTAFLUOROPHENYLBORON HALIDES AND SOME DERIVED COMPOUNDS [J].
CHAMBERS, RD ;
CHIVERS, T .
JOURNAL OF THE CHEMICAL SOCIETY, 1965, (JUL) :3933-&
[13]   OLEFIN CO-ORDINATION COMPOUNDS .3. INFRA-RED SPECTRA AND STRUCTURE - ATTEMPTED PREPARATION OF ACETYLENE COMPLEXES [J].
CHATT, J ;
DUNCANSON, LA .
JOURNAL OF THE CHEMICAL SOCIETY, 1953, (OCT) :2939-2947
[14]   VALIDATION OF THE GENERAL-PURPOSE TRIPOS 5.2 FORCE-FIELD [J].
CLARK, M ;
CRAMER, RD ;
VANOPDENBOSCH, N .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 1989, 10 (08) :982-1012
[15]   STRUCTURE AND REACTIVITY OF BIS(PENTAMETHYLCYCLOPENTADIENYL)(ETHYLENE)TITANIUM(II), A SIMPLE OLEFIN ADDUCT OF TITANIUM [J].
COHEN, SA ;
AUBURN, PR ;
BERCAW, JE .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (05) :1136-1143
[16]  
Cook K. J., UNPUB
[17]   Reactions of bis(pentafluorophenyl)borane with Cp2Ta(=CH2)CH3 [J].
Cook, KS ;
Piers, WE ;
Rettig, SJ .
ORGANOMETALLICS, 1999, 18 (09) :1575-1577
[18]   Synthesis and reactivity of tantalocene zwitterions stabilized by ground-state α-agostic interactions via reaction of B(C6F5)3 with Cp′2Ta(=CH2)(CH3) (Cp′ = C5H5, C5H4Me) [J].
Cook, KS ;
Piers, WE ;
Rettig, SJ ;
McDonald, R .
ORGANOMETALLICS, 2000, 19 (12) :2243-2245
[19]  
DEWAR JS, 1951, B SOC CHIM FR, V18, pC71
[20]  
Eisch J. J., 1996, Adv. Organomet. Chem., V39, P355