Organic synthesis is the backbone of modern chemistry, enabling the creation of new molecules with tailored properties for a vast array of applications, from pharmaceuticals to advanced materials. Within this field, specific intermediates are highly valued for their reactivity and structural versatility. 1,2-O-Isopropylidene-D-glucofuranose (CAS 18549-40-1) is one such compound, recognized for its utility in complex synthetic pathways.
The chemical structure of 1,2-O-Isopropylidene-D-glucofuranose offers a unique advantage: the isopropylidene group selectively protects the hydroxyl functionalities at the 1 and 2 positions of the glucofuranose ring. This protection strategy is a cornerstone of synthetic organic chemistry, allowing for regioselective transformations at other sites on the molecule. The compound typically presents as a 'white crystalline solid', providing a stable and easily handled reagent for laboratory synthesis. Its molecular formula C9H16O6 and molecular weight of 220.22 are key identifiers for chemists.
For organic chemists, the ability to 'buy 1,2-O-Isopropylidene-D-glucofuranose' with high purity is essential for successful reaction outcomes. When searching for this chemical, terms like 'high purity 1,2-O-Isopropylidene-D-glucofuranose price' and 'CAS 18549-40-1 supplier' are common. The demand for consistent quality drives the need to source from reliable 'manufacturer' partners who can guarantee minimal impurities, often above 98% purity.
The global chemical supply chain has made it increasingly accessible to procure such specialized intermediates. Suppliers from China, for example, offer competitive pricing, making terms like 'wholesale 1,2-O-Isopropylidene-D-glucofuranose for sale' attractive to research institutions and chemical companies. Understanding the 'manufacturer's' production capabilities and supply chain robustness is crucial for ensuring a steady flow of this vital reagent.
The applications of 1,2-O-Isopropylidene-D-glucofuranose are diverse. It serves as a key intermediate in the synthesis of various bioactive compounds, including certain pharmaceuticals, and is also used in the development of novel carbohydrate-based materials. Its protected nature allows for stepwise modifications, leading to the creation of complex structures that would be challenging to achieve otherwise. For academic researchers and industrial R&D departments, it represents a valuable tool in their synthetic arsenal.
In conclusion, 1,2-O-Isopropylidene-D-glucofuranose is a testament to the ingenuity of chemical protection strategies. Its availability from reputable suppliers ensures that chemists can continue to push the boundaries of molecular construction, driving innovation across various scientific disciplines.
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