Conscientia Industrial Co., Ltd

63593-03-3
CAS 63593-03-3 Manufacturer & Supplier | High Purity | In Stock
3-O-Benzyl-4-(hydroxymethyl-1,2-O-isopropylidene-alpha-D-erythropentofuranose
High-purity 3-O-Benzyl-4-(hydroxymethyl)-1,2-O-isopropylidene-alpha-D-erythro-pentofuranose (CAS 63593-03-3) manufacturer in China. Providing stable industrial supply, and fast global shipping. Request Price, COA, and MSDS from Conscientia Industrial.
Product Overview
3-O-Benzyl-4-(hydroxymethyl-1,2-O-isopropylidene-alpha-D-erythropentofuranose (CAS 63593-03-3) is a highly specialized carbohydrate derivative utilized primarily as a key chiral building block and intermediate of Amiprilose in modern medicinal chemistry. Within the Pharmaceutical Intermediates and fine chemical sectors, this protected furanose derivative is essential for the stereoselective synthesis of branched-chain nucleosides and complex antiviral agents. As a leading manufacturer of 3-O-Benzyl-4-(hydroxymethyl-1,2-O-isopropylidene-alpha-D-erythropentofuranose (CAS 63593-03-3) based in China, Conscientia Industrial employs advanced organic synthesis techniques, including precise protection-deprotection protocols and multi-stage vacuum distillation or recrystallization, to ensure exceptional structural integrity. Our product maintains a strict purity profile to meet global technical requirements for the development of high-end pharmaceutical precursors and specialized bio-organic research.
Technical Specifications
Product Name: 3-O-Benzyl-4-(hydroxymethyl-1,2-O-isopropylidene-alpha-D-erythropentofuranose
CAS Number: 63593-03-3
Category: Pharmaceutical Intermediates
Quality Standard: In-House
Purity (GC/HPLC): ≥97.0%
Molecular Formula: C16H22O6
Molecular Weight: 310.34
Appearance: Viscous colorless to pale yellow oil or solid
Application: Amiprilose intermediate
Brand: Conscientia Industrial
Country of Origin: China
Availability: In Stock
Pricing: Competitive price based on order quantity
Currency: USD
Molecular Structure:

Why Partner with Conscientia Industrial
Technical Quality Control: Our manufacturing process follows rigorous analytical protocols to ensure high-grade batch-to-batch consistency for CAS 63593-03-3.
Advanced Analytical Verification: Every batch is validated through Proton NMR (1H-NMR) and GC/MS to confirm the chemical identity and isomeric purity of the furanose ring system.
Full Technical Documentation: We provide comprehensive support, including Certificate of Analysis (COA), MSDS, and detailed Technical Data Sheets (TDS) for industrial evaluation.
Scalable Production Capacity: Our China facility is equipped to support projects ranging from laboratory-scale R&D quantities to customized bulk industrial intermediate supply.
Direct Source Advantage: As a primary manufacturer, we provide 3-O-Benzyl-4-(hydroxymethyl)-1,2-O-isopropylidene-alpha-D-erythro-pentofuranose with efficient lead times and direct factory technical support.
Packaging & Storage
Standard Packaging: 1kg/bottle, 25kg/drum, or customized packaging based on technical requirements.
Storage Conditions: Store in a tightly closed container in a cool, dry, and well-ventilated area. Recommended storage temperature is 2-8°C to maintain stability. Protected from light and moisture.
Safety Handling: This material is a technical-grade pharmaceutical intermediate intended for industrial production and laboratory research use only. Proper PPE should be worn during handling.
Our logistics team ensures secure distribution of CAS 63593-03-3 via global courier and specialized air freight to maintain chemical stability during transit.
Request a Quote & COA for 3-O-Benzyl-4-(hydroxymethyl)-1,2-O-isopropylidene-alpha-D-erythro-pentofuranose CAS 63593-03-3 Today.
Related Products |
|---|
473278-54-5 |
2873-29-2 |
136834-22-5 |
199593-09-4 |
150780-67-9 |
≥98% Purity Peptides in stock |
|---|
COG 133 |
Eptifibatide |
Larazotide Acetate |
Carbetocin |
Moth Cytochrome C (MCC) 88-103 |
Expert Review
Rating: 5/5
★★★★★ Alan Brooks (Purchase Manager)
The intermediate we purchased demonstrates consistent quality with well-controlled impurity levels. It performs effectively in our synthesis workflows.