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BINOL dilithium salt

An improved preparation of Shibasaki s LLB catalyst allowed higher asymmetric induction in the chemistry shown in Scheme 5-28. The new recipe involved mixing LaCl3 7H20 (1 equiv.), BINOL-dilithium salt (2.7 equiv.) and NaOt-Bu (0.3 equiv.) in THF at 50°C. This catalyst allowed asymmetric hydrophosphonylation of aldehydes in high yields and up to 95% ee (Scheme 5-33, Eq. 1), and gave better results for aliphatic aldehydes than a related aluminum catalyst (ALB, see Scheme 5-37 below). [Pg.160]

For example, an effective procedure for the synthesis of LLB (where LL = lanthanum and lithium) is treatment of LaCls 7H2O with 2.7 mol equiv. BINOL dilithium salt, and NaO-t-Bu (0.3 mol equiv.) in THF at 50 °C for 50 h. Another efficient procedure for the preparation of LLB starts from La(0-/-Pr)3 [54], the exposure of which to 3 mol equiv. BINOL in THF is followed by addition of butyllithium (3 mol equiv.) at 0 C. It is worthy of note that heterobimetallic asymmetric complexes which include LLB are stable in organic solvents such as THF, CH2CI2 and toluene which contain small amounts of water, and are also insensitive to oxygen. These heterobimetallic complexes can, by choice of suitable rare earth and alkali metals, be used to promote a variety of efficient asymmetric reactions, for example nitroaldol, aldol, Michael, nitro-Mannich-type, hydrophosphonylation, hydrophosphination, protonation and Diels-Alder reactions. A catalytic asymmetric nitroaldol reaction, a direct catalytic asymmetric aldol reaction, and a catalytic asymmetric nitro-Mannich-type reaction are discussed in detail below. [Pg.932]

Shibasaki et al. have reported excellent La/Li/BINOL (LLB) catalytic system prepared from the LaCl3 x 7H2O and BINOL-dilithium salt in the presence of r-BuONa in THF at 50 °C [183]. Using this catalytic system enantiomeric excess in the reaction of dimethylphosphite and aldehydes was increased to 95% (for p-dimethylaminobenzaldehyde). For the aliphatic aldehydes also a better... [Pg.246]

Cyanosilylation. Another preparative procedure of BINOL-TiCl2 and the use thereof was reported in the asymmetric catalysis of the addition reaction of cyanotrimethylsilane to aldehydes. The dilithium salt of BINOL in ether was treated with... [Pg.93]

Reetz et al. reported that a chiral Ti complex prepared from TiCL). and the dilithium salt of (S)-BINOL promoted the aldol reaction of 3-mefhylbutanal with KSA 48 with only poor enantioselectivity (60%, 8% ee) [115 b]. After this pioneering work, the titanium-based catalyst system has been intensively improved to attain an efficient catalytic cycle and high stereoselectivity [147-155]. [Pg.444]


See other pages where BINOL dilithium salt is mentioned: [Pg.125]    [Pg.106]    [Pg.153]    [Pg.153]    [Pg.15]    [Pg.15]    [Pg.125]    [Pg.106]    [Pg.153]    [Pg.153]    [Pg.15]    [Pg.15]    [Pg.402]    [Pg.211]    [Pg.215]    [Pg.278]    [Pg.118]    [Pg.417]   
See also in sourсe #XX -- [ Pg.165 ]




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BINOL

Dilithium

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