STRUCTURAL STUDY AND REACTIVITY OF CARBANIONS IN SOLUTION - PHENYLACETONITRILES AND 3-PYRIDYLACETONITRILES

被引:33
作者
CROISAT, D
SEYDENPENNE, J
STRZALKO, T
WARTSKI, L
CORSET, J
FROMENT, F
机构
[1] INST CHIM MOLEC ORSAY,CNRS,URA 478,F-91405 ORSAY,FRANCE
[2] LASIR,CNRS,F-94320 THIAIS,FRANCE
关键词
D O I
10.1021/jo00050a015
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
From the IR and C-13 NMR spectra of Li- or K-associated anionic species 1A,M formed from phenylacetonitrile in THF, it appears that monomeric tight ion pairs and THF-solvated aggregates are in equilibrium at 0.25 M concentration; the 0.025 M THF solution of IA,Li only contains the monomer, the Li cation being likely located near the N atom of the CN moiety. In toluene-THF or hexane-THF solvent mixtures, solvated aggregates are predominant In toluene-hexane, only desolvated aggregates are seen. Addition of increasing amounts of HMPA to THF solutions shows the formation of various Li solvates among which, according to low-temperature P-31 and Li-7 NMR determinations, the Li-di HMPA externally solvated ion pairs predominate. Solvent- or cryptand-separated ion pairs can also be characterized in DMSO or THF m the presence of cryptand. Li- or K-associated 3-pyridylacetonitrile anionic species 2A,M behave as IA,M in toluene, in DMSO, and in THF in the presence of HMPA or of cryptand. In THF, as for IA,Li, 2A,Li monomeric tight ion pairs are in equilibrium with THF-solvated aggregates at c = 0.25 M concentration, the Li cation interacting both with the CN moiety and the pyridyl ring; however, at c = 0.025 M aggregates are still present. IA,M and 2A,M (M = Li, K) aggregates or IA,Li and 2A,Li externally HMPA solvated ion pairs lead to predominant or exclusive 1,4-addition with benzylideneacetone. In THF 1,2-addition takes place with IA,Li while 2A,Li leads to exclusive 1,4 addition; this discrepancy could be due to the fact that the equilibrium between monomeric tight ion pairs and aggregates is different in the two cases and to the different structure of the tight ion pairs, especially the strength of the anion-cation interaction.
引用
收藏
页码:6435 / 6447
页数:13
相关论文
共 50 条
[41]   STRUCTURE AND REACTIVITY OF LITHIUM ENOLATES - FROM PINACOLONE TO SELECTIVE C-ALKYLATIONS OF PEPTIDES - DIFFICULTIES AND OPPORTUNITIES AFFORDED BY COMPLEX STRUCTURES [J].
SEEBACH, D .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 1988, 27 (12) :1624-1654
[42]  
SEEBACH D, 1986, MODERN SYNTHESIS MET, P190
[43]  
SEYDENPENNE J, 1988, REDUCTION ALUMINO BO, P40
[44]  
VOGT HH, 1981, CHEM BER, V114, P2284
[45]  
WALBORSKY HM, 1983, CHEM FUNCTIONAL GROU, P835
[46]  
WILMSHURST JK, 1957, CAN J CHEM, V18, P1183
[47]  
Wilson E.B., 1955, MOL VIBRATIONS
[48]   X-RAY STRUCTURE-ANALYSIS OF ALPHA-LITHIOPHENYLACETONITRILE.LITHIUM DIISOPROPYLAMIDE.2 TETRAMETHYLETHYLENEDIAMINE - A QUASI-DIANION COMPLEX [J].
ZARGES, W ;
MARSCH, M ;
HARMS, K ;
BOCHE, G .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 1989, 28 (10) :1392-1394
[49]   AMINONITRILE AND CYANOHYDRIN ETHERS AS BENZOYL ANION EQUIVALENTS IN CONJUGATE ADDITIONS TO SUBSTITUTED ALPHA-CYCLENONES - COMPARATIVE SYNTHETIC POTENTIALITIES [J].
ZERVOS, M ;
WARTSKI, L ;
SEYDENPENNE, J .
TETRAHEDRON, 1986, 42 (18) :4963-4973
[50]  
1941, ORG SYNTH, V1, P107