4.5 Article

Platinum-Catalyzed Asymmetric Alkylation of Bis(isitylphosphino)ethane: Stereoselectivity Reversal in Successive Formation of Two P-C Bonds

Journal

ORGANOMETALLICS
Volume 29, Issue 2, Pages 378-388

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/om900800z

Keywords

-

Funding

  1. National Science Foundation
  2. Department of Education

Ask authors/readers for more resources

Alkylation of the bis(secondary) phosphine IsHP(CH2)(2)PHIs (1; Is = isityl = 2 4,6-(i-Pr)(3)C6H2) with 2-(bromomethyl)napththalene using 10 mol % of the catalyst precursor Pt((R,R)-Me-DuPhos)(Ph)(Cl) and the base NaOSiMe3 selectively yielded meso-IsP(CH2Ar)(CH2)(2)P(CH2Ar)(Us) (2; Ar = 2-naphthyl; dr = meso/rac ratio = 3.4:1). Half-alkylated IsP(CH2Ar)(CH2)(2)PH(Is) (3), all intermediate in this reaction, was prepared from 1 by deprotonation (s-BuLi) and alkylation with 2-(chloromethyl)naphthalene. Analysis of the observed diastereo- and enantioselectivity in the Pt-Catalyzed alkylations of 1 and 3 yielded quantitative information on the stereoselectivity of both P-C bond-forming steps. The First alkylation (1 -> 3) resulted in diastercoselective formation of a tertiary phosphine stereocenter (similar to 2:1 ratio). In the second alkylation (3 -> 2), however, both (R-P)-3 and (S-P)-3 (the label refers to the configuration of the tertiary phosphine) selectively formed meso-2, instead of (R,R)-2 or (S,S)-2, respectively (the ratios were ca. 3:1 and 7:1). Thus, the tertiary phosphine in 3 favored alternation of stereochemistry in the alkylation of the secondary phosphine (substrate control with negative cooperativity). Platinum-catalyzed alkylation of IsPH(CH2)(2)OSi(i-Pr)(3) (6) gave IsP(CH2Ar)(CH2)(2)OSi(i-Pr)(3) (9) in a 1.51: enantiomeric ratio (er). A related reaction of IsPH(CH2)(2)OSiMe3 (4) gave a mixture of IsP(CH2Ar)(CH2)(2)OR (R = SiMe3 (7); R = H (8)), while alkylation of IsPH(CH2)(2)OH (5) gave 8 in about 2:1 er. Thus, the nature, and even the absolute configuration, of the pendant group X three bonds from the reactive phosphorus center in the substrates IsHP(CH2)(2)X (X = PHIs (1), P(CH2Ar)(Is) (3), OSiMe3 (4), OH (5), OSi(i-Pr)(3) (6)) had a strong influence on the selectivity of Pt-catalyzed Phosphorus alkylation. Possible mechanistic explanations for this substrate control are discussed.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.5
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available