912972
(2S,2′S,3S,3′S)-MeO-BIBOP
≥97%
Synonym(s):
(2S,2′S,3S,3′S)-3,3′-di-tert-butyl-4,4′-dimethoxy-2,2′,3,3′-tetrahydro-2,2′-bibenzo[d][1,3]oxaphosphole
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About This Item
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assay
≥97%
form
powder
optical purity
ee: ≥99% (HPLC)
reaction suitability
reagent type: ligand
functional group
phosphine
Application
(2S,2′S,3S,3′S)-MeO-BIBOP is a P-chiral biphosphorus ligand used in a variety of asymmetric transition metal-catalyzed transformations including hydrogenations, propargylations, reductions, and hydroformylations.
Product can be used with our benchtop hydrogen generator, H-Genie Lite (Z744083)
Product can be used with our benchtop hydrogen generator, H-Genie Lite (Z744083)
Legal Information
Sold in collaboration with Zejun Pharmaceuticals
related product
Product No.
Description
Pricing
Storage Class
11 - Combustible Solids
wgk_germany
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
Certificates of Analysis (COA)
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Organic letters, 12(1), 176-179 (2009-12-03)
A series of novel, efficient, air-stable, and tunable chiral bisdihydrobenzooxaphosphole ligands (BIBOPs) were developed for rhodium-catalyzed hydrogenations of various functionalized olefins such as alpha-arylenamides, alpha-(acylamino)acrylic acid derivatives, beta-(acylamino)acrylates, and dimethyl itaconate with excellent enantioselectivities (up to 99% ee) and reactivities
Organic letters, 18(14), 3346-3349 (2016-06-23)
Air-stable and tunable chiral bisdihydrobenzooxaphosphole ligands (BIBOPs) were employed in rhodium-catalyzed asymmetric hydroformylation of various terminal olefins with excellent conversions (>99%), moderate-to-excellent enantioselectivities (up to 95:5 er), and branched to linear ratios (b:l) of up to 400.
Angewandte Chemie (International ed. in English), 58(38), 13573-13583 (2019-07-26)
We herein report the development of a conformationally defined, electron-rich, C2 -symmetric, P-chiral bisphosphorus ligand, ArcPhos, by taking advantage of stereoelectronic effects in ligand design. With the Rh-ArcPhos catalyst, excellent enantioselectivities and unprecedentedly high turnovers (TON up to 10 000) were
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