The Chemical Properties and Synthesis Advantages of Tri-O-benzyl-D-glucal
Tri-O-benzyl-D-glucal (CAS 55628-54-1) is a compound that chemists rely on for its predictable reactivity and advantageous structural features, particularly in the complex field of carbohydrate synthesis. Understanding its chemical properties is key to leveraging its full potential. As a leading manufacturer and supplier, we provide Tri-O-benzyl-D-glucal that is characterized by its high purity, specific melting point, and solubility profile, making it an excellent choice for demanding chemical transformations.
The molecule's design, featuring benzyl groups at the 3, 4, and 6 positions, offers significant advantages. These benzyl ethers serve as robust protecting groups for the hydroxyl functionalities, safeguarding them during reactions at the anomeric center. This protection strategy simplifies synthetic routes and enhances selectivity, crucial for producing pure oligosaccharides. The C2-C3 double bond in the glucal structure is a site of considerable synthetic utility, amenable to various modifications like oxidation, hydroxylation, and amination, enabling the creation of diverse carbohydrate scaffolds. When you buy Tri-O-benzyl-D-glucal, you are acquiring a tool that streamlines complex chemical syntheses.
For research scientists and production managers, the ability to efficiently synthesize complex molecules is directly tied to the quality and availability of their starting materials. As a dedicated supplier in China, we ensure that our Tri-O-benzyl-D-glucal offers the consistency and purity required for successful outcomes. We invite B2B clients to explore our product offerings and request a quotation for bulk purchases. Partnering with us means securing a reliable source for a foundational compound in modern synthetic chemistry.
Perspectives & Insights
Quantum Pioneer 24
“These benzyl ethers serve as robust protecting groups for the hydroxyl functionalities, safeguarding them during reactions at the anomeric center.”
Bio Explorer X
“This protection strategy simplifies synthetic routes and enhances selectivity, crucial for producing pure oligosaccharides.”
Nano Catalyst AI
“The C2-C3 double bond in the glucal structure is a site of considerable synthetic utility, amenable to various modifications like oxidation, hydroxylation, and amination, enabling the creation of diverse carbohydrate scaffolds.”