4.5 Article

Enantiomerically Pure N Chirally Substituted 1,3-Benzazaphospholes: Synthesis, Reactivity toward tBuLi, and Conversion to Functionalized Benzazaphospholes and Catalytically Useful Dihydrobenzazaphospholes

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ORGANOMETALLICS
卷 33, 期 3, 页码 804-816

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AMER CHEMICAL SOC
DOI: 10.1021/om401184n

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  1. Deutsche Forschungsgemeinschaft (DFG) [HE1997/14-1]

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Catalytic C-P coupling of chiral o-bromoanilines 1a-c to the corresponding o-phosphonoanilines 2a-c, reduction to the phosphines 3a-c, and final acid-catalyzed cyclocondensation represents a convenient access to the title compounds 4-c. Reaction of 4a,b with tBuLi allows solvent-dependent directed lithiation leading either to 2-lithiobenzazaphospholes with a P=CLi NR substructure (in Et2O/KOtBu), in the case of anisyl substitution accompanied by partial additional lithiation in o-position of the MeO-group, or to regiospecific normal addition with formation of -P-(tBu)-CHLi-NR- species. These were trapped by ClSiMe3, CO2, or MeOH to give the corresponding substitution products 7b, 8b, 10b, 11a,b and 12a,b, respectively. 12a,b, containing the P-C-COOH structural unit, forms with Ni(COD)(2) in THF very efficient ethylene oligomerization catalysts With high selectivity for linear alpha-olefins. The structure elucidation of the products is based on conclusive solution NMR data and crystal structure analyses of the 1-(1S)-anisylethyl compounds 3b and 4b.

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