Diacetone-D-Allofuranose CAS 2595-05-3 Assay >98.0% (HPLC)
Shanghai Ruifu Chemical Co., Ltd. is the leading manufacturer of 1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose (Diacetone-D-Allofuranose) (CAS: 2595-05-3) with high quality. Ruifu Chemical has 15 years experience in carbohydrate chemistry. Ruifu Chemical can provide worldwide delivery, competitive price, excellent service, small and bulk quantities available. Purchase carbohydrates, Please contact: alvin@ruifuchem.com
Chemical Name | 1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose |
Synonyms | Diacetone-D-Allofuranose; 1,2:5,6-Di-O-Isopropylidene-alpha-D-Allofuranose; 1,2:5,6-Diisopropylidene-α-D-Isofuranose |
Stock Status | In Stock, Commercial Production |
CAS Number | 2595-05-3 |
Molecular Formula | C12H20O6 |
Molecular Weight | 260.29 g/mol |
Melting Point | 73.0~77.0℃ |
Store Under Inert Gas | Store Under Inert Gas |
Sensitive | Moisture Sensitive, Heat Sensitive |
Solubility in Toluene | Almost Transparency |
COA & MSDS | Available |
Origin of Product | Shanghai, China |
Product Categories |
Carbohydrates Sugars |
Brand | Ruifu Chemical |
Items | Specifications | Results |
Appearance | White Crystalline Powder | White Crystalline Powder |
Identification | IR and HPLC | Complies |
NMR and MS | Should Comply | Complies |
Specific Rotation [α]20/D | +35.0° ~ +38.0° (C=1, CHCl3) | +37.4° |
Melting Point | 73.0~77.0℃ | 74.0~76.0℃ |
Loss on Drying | <0.50% | 0.11% |
Residue on Ignition | <0.50% | 0.02% |
Heavy Metals (Pb) | <20ppm | <20ppm |
TLC | Should be One Spot | One Spot |
Assay / Analysis Method | >98.0% (HPLC) | 98.8% |
Conclusion | The product has been tested and complies with the given specifications |
Package: Bottle, Aluminium foil bag, 25kg/Cardboard Drum, or according to customer's requirement.
Storage Condition: Keep the container tightly closed, store in a cool, dry (2~8℃) and well-ventilated warehouse away from incompatible substances. Keep away from sunshine; avoid fire and heat sources; avoid moisture.
Shipping: Deliver to worldwide by air, by FedEx / DHL Express. Provide fast and reliable delivery.
How to Purchase? Please contact Dr. Alvin Huang: sales@ruifuchem.com or alvin@ruifuchem.com
15 Years Experience? We have more than 15 years of experience in the manufacture and export of a wide range of high quality pharmaceutical intermediates or fine chemicals.
Main Markets? Sell to domestic market, North America, Europe, India, Korea, Japanese, Australia, etc.
Advantages? Superior quality, affordable price, professional services and technical support, fast delivery.
Quality Assurance? Strict quality control system. Professional equipment for analysis include NMR, LC-MS, GC, HPLC, ICP-MS, UV, IR, OR, K.F, ROI, LOD, MP, Clarity, Solubility, Microbial limit test, etc.
Samples? Most products provide free samples for quality evaluation, shipping cost should be paid by customers.
Factory Audit? Factory audit welcome. Please make an appointment in advance.
MOQ? No MOQ. Small order is acceptable.
Delivery Time? If within stock, three days delivery guaranteed.
Transportation? By Express (FedEx, DHL), by Air, by Sea.
Documents? After sales service: COA, MOA, ROS, MSDS, etc. can be provided.
Custom Synthesis? Can provide custom synthesis services to best fit your research needs.
Payment Terms? Proforma invoice will be sent first after confirmation of order, enclosed our bank information. Payment by T/T (Telex Transfer), PayPal, Western Union, etc.
Hazard Symbols Xi - Irritant
Risk Codes 36/37/38 - Irritating to eyes, respiratory system and skin.
Safety Description S22 - Do not breathe dust.
S24/25 - Avoid contact with skin and eyes.
S36/37 - Wear suitable protective clothing and gloves.
S26 - In case of contact with eyes, rinse immediately with plenty of water and seek medical advice.
WGK Germany 3
FLUKA BRAND F CODES 21
HS Code 2940009090
1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose (Diacetone-D-Allofuranose) (CAS: 2595-05-3) is a carbohydrate compound that is widely used in various fields of research and industry. It is a derivative of D-allofuranose, which is a type of sugar that is commonly found in nature. DIAP is characterized by its isopropylidene group, which is added to the 1,2 and 5,6 positions of the sugar molecule.
1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose has been studied for its potential applications in the synthesis of pharmaceuticals and other compounds due to its unique chemical structure and properties.
1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose (Diacetone-D-Allofuranose) (CAS: 2595-05-3) has found numerous applications in scientific research. It has been used as a substrate for the synthesis of various compounds, such as glycoconjugates and glycosylated drugs. It has also been used as a starting material for the synthesis of other cyclic sugar derivatives, such as 1,2:3,4-di-O-Isopropylidene-alpha-D-Allofuranose. Furthermore, it has been used in the synthesis of polysaccharides and other complex carbohydrates.
The main advantage of using 1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose in laboratory experiments is its ability to form cyclic structures, which can be useful for synthesizing complex carbohydrates and other compounds. Additionally, it is relatively easy to synthesize and can be separated into its two isomers by chromatography.
On the other hand, 1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose is a relatively unstable molecule and can easily decompose under certain conditions. Furthermore, it is a chiral molecule and can exist in two different optical isomers, which can complicate the synthesis of certain compounds.
1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose (Diacetone-D-Allofuranose) (CAS: 2595-05-3), The potential applications of 1,2:5,6-Di-O-Isopropylidene-α-D-Allofuranose are vast and far-reaching. In the future, it may be used in the synthesis of complex carbohydrates and other compounds, such as glycoconjugates and glycosylated drugs. Additionally, it may be used in the development of new anti-inflammatory and anti-oxidant drugs. Furthermore, it may be used in the development of new polysaccharides and other complex carbohydrates. Finally, it may be used in the development of new medications for the treatment of bacterial infections.