METAL CLUSTER STABILIZED 2-BORNYL CATIONS - A SYNTHETIC, X-RAY CRYSTALLOGRAPHIC, AND EHMO STUDY

被引:46
作者
GRUSELLE, M
ELHAFA, H
NIKOLSKI, M
JAOUEN, G
VAISSERMANN, J
LI, LJ
MCGLINCHEY, MJ
机构
[1] UNIV PARIS 06, CHIM MET TRANSIT LAB, CNRS, UA 419, F-75252 PARIS 05, FRANCE
[2] MCMASTER UNIV, DEPT CHEM, HAMILTON L8S 4M1, ONTARIO, CANADA
关键词
D O I
10.1021/om00036a035
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Metal cluster derivatives of the 2-bornyl cation, viz. (2-propynylbornyl)(M1-M2), where M1 and M2 can be (C5H5)MO(CO)2 or CO(CO)3, have been synthesized by protonation of suitable precursors. Unlike the uncomplexed 2-alkynylbornyl cations, these metal-stabilized systems do not undergo the Wagner-Meerwein rearrangement to the corresponding 4-alkynylcamphenyl cations. [(2-propynylbornyl)Mo2(CO)4(C5H5)2][BF4], 22, crystallizes in the orthorhombic space group P2(1)2(1)2(1) with a = 8.557(2) angstrom, b = 12.074(3) angstrom, c = 25.888(4) angstrom, and V = 2675(1) angstrom3 for Z = 4. [(2-propynylbornyl)Mo(CO)2(C5H5)-Co(CO)3][BF4], 23, crystallizes in the orthorhombic space group P2(1)2(1)2(1) with a = 12.647(2) angstrom, b = 13.874(2) angstrom, c = 14.040(2) angstrom, and V = 2463.6(6) angstrom3 for Z = 4. In both cases, the 2-bornyl cation leans toward a molybdenum atom such that the Mo-C+ distance is 2.74 angstrom for 22 and 2.91 angstrom for 23. The preferential stabilization of the cation by the molybdenum vertex rather than by the tricarbonylcobalt fragment is rationalized by means of molecular orbital calculations at the extended Huckel level.
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页码:4917 / 4925
页数:9
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