632287
VenPure® SF
powder
Synonym(s):
Sodium borohydride, Sodium tetrahydridoborate
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About This Item
Recommended Products
form
powder
reaction suitability
reagent type: reductant
mp
>300 °C (dec.) (lit.)
SMILES string
[BH4-].[Na+]
InChI
1S/BH4.Na/h1H4;/q-1;+1
InChI key
YOQDYZUWIQVZSF-UHFFFAOYSA-N
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Application
VenPure® SF (Sodium borohydride powder) is a mild reducing agent used in the reduction of aldehydes and ketones to their corresponding alcohols. It is generally inert to other functional groups such as epoxides, esters, nitriles and lactones. Along with carboxylic acid, it forms acyloxyborohydride, which is a versatile reducing agent to reduce indoles, quinolones, imines, enamines, oximes and enamides.
Legal Information
VenPure is a registered trademark of Ascensus Specialties LLC
Signal Word
Danger
Hazard Statements
Precautionary Statements
Hazard Classifications
Acute Tox. 3 Oral - Eye Dam. 1 - Repr. 1B - Skin Corr. 1B - Water-react 1
Supplementary Hazards
Storage Class Code
4.3 - Hazardous materials which set free flammable gases upon contact with water
WGK
WGK 2
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves
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Sodium borohydride in carboxylic acid media: a phenomenal reduction system.
Chemical Society Reviews, 27(6), 395-404 (1998)
Sodium borohydride.
e-EROS Encyclopedia of Reagents for Organic Synthesis., 1-13 (2014)
Forty years of hydride reductions.
Tetrahedron, 35(5), 567-607 (1979)
Free radical biology & medicine, 53(6), 1308-1316 (2012-08-14)
Singlet oxygen ((1)O(2)) is a reactive oxygen species generated during photo-oxidation, inflammation, and via peroxidase-catalyzed reactions (e.g., myeloperoxidase and eosinophil peroxidase). (1)O(2) oxidizes the free amino acids Trp, Tyr, His, Cys, and Met, and those species present on peptides/proteins, with
ACS nano, 6(9), 7739-7751 (2012-08-10)
Owing to its high storage capacity (10.8 mass %), sodium borohydride (NaBH(4)) is a promising hydrogen storage material. However, the temperature for hydrogen release is high (>500 °C), and reversibility of the release is unachievable under reasonable conditions. Herein, we
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