(R)-(-)-1,1'-BINAPHTHYL-2,2'-DIOXYCHLOROPHOSPHINE - CAS 137156-22-0

(R)-(-)-1,1'-BINAPHTHYL-2,2'-DIOXYCHLOROPHOSPHINE is a chiral phosphine ligand for enantioselective synthesis with high yield and high enantioselective results.

Product Information

Canonical SMILES
ClP1OC2=CC=C3C=CC=CC3=C2C4=C5C=CC=CC5=CC=C4O1
Purity
95%
Storage
Inert atmosphere. Keep cold.

Safety Information

Signal Word
Warning
Precautionary Statement
P261 - P305+P351+P338
Hazard Statements
H315 - H319 - H335

Reference Reading

1.A Molecular Dynamics Simulation Study of the Association of 1,1'-Binaphthyl-2,2'-diyl hydrogenphosphate Enantiomers with a Chiral Molecular Micelle.
Morris KF1, Billiot EJ2, Billiot FH2, Gladis AA1, Lipkowitz KB3, Southerland WM4, Fang Y4. Chem Phys. 2014 Aug 17;439:36-43.
Molecular dynamics (MD) simulations were used to investigate the binding of 1,1'-binaphthyl-2,2'-diyl hydrogenphosphate (BNP) enantiomers to the molecular micelle poly-(sodium undecyl-(L,L)-leucine-valine) (poly(SULV)). Poly(SULV) is used as a chiral selector in capillary electrophoresis separations. Four poly(SULV) binding pockets were identified and either (R)-BNP or (S)-BNP were docked into each pocket. MD simulations were then used to identify the preferred BNP binding site. Within the preferred site, both enantiomers formed hydrogen bonds with poly(SULV) and penetrated into the poly(SULV) core. Comparisons of BNP enantiomer binding to the preferred poly(SULV) pocket showed that (S)-BNP formed stronger hydrogen bonds, moved deeper into the binding site, and had a lower poly(SULV) binding free energy than the (R) enantiomer. Finally, MD simulation results were in agreement with capillary electrophoresis and NMR experiments. Each technique showed (S)-BNP interacted more strongly with poly(SULV) than (R)-BNP and that the site of chiral recognition was near the poly(SULV) leucine chiral center.
2.Gram Scale Conversion of R-BINAM to R-NOBIN.
Patel DC1, Breitbach ZS1, Woods RM1, Lim Y1, Wang A1, Jr FW1, Armstrong DW1. J Org Chem. 2016 Feb 5;81(3):1295-9. doi: 10.1021/acs.joc.5b02663. Epub 2016 Jan 7.
A mild, operationally simple, and single-step transition-metal-free protocol for the synthesis of enantiomerically pure (R)-(+)-2'-amino-1,1'-binaphthalen-2-ol (R-NOBIN) from (R)-(+)-1,1'-binaphthyl-2,2'-diamine (R-BINAM) is reported. The one-pot conversion proceeds with good yield and shows no racemization. The hydroxyl on the R-NOBIN product was shown to have come from water in the reaction medium via an H2(18)O study. The correct value of the specific rotation of R-NOBIN was reported.
The molarity calculator equation

Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)

The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2

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