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Dibenzyl Phosphate
Dibenzyl Phosphate
Dibenzyl Phosphate
Dibenzyl Phosphate
Dibenzyl Phosphate
Dibenzyl Phosphate

Dibenzyl Phosphate

Price 800.0 INR/ Kilograms

MOQ : 1 Kilograms

Dibenzyl Phosphate Specification

  • Molecular Formula
  • C14H15O4P
  • Solubility
  • Slightly soluble in organic solvents
  • CAS No
  • 1623-08-01
  • Properties
  • Dibenzyl Phosphate is an organic phosphate ester with a molar mass of 278.24 g/mol. It consists of a phosphate group bonded to two benzyl substituents, giving it both aromatic stability and reactive ester functionality.
  • Melting Point
  • 78 80 C
  • Physical Form
  • Solid
  • Purity
  • 96-98%
  • Molecular Weight
  • 278.24 g/mol Grams (g)
  • Structural Formula
  • C14H15O4P
  • Appearance
  • White crystalline
  • Usage
  • Dibenzyl Phosphate Is Mainly Used As An Intermediate In Organic And Pharmaceutical Synthesis. It Serves As A Protected Phosphate Group In Multistep Reactions, Allowing Controlled Formation Of Phosphate Esters During Drug And Nucleotide Development.
  • Application
  • Industrial
 

Dibenzyl Phosphate Trade Information

  • Minimum Order Quantity
  • 1 Kilograms
  • Payment Terms
  • Cash in Advance (CID)
  • Supply Ability
  • 5000 Kilograms Per Month
  • Delivery Time
  • 10 Days
  • Main Domestic Market
  • All India
 

About Dibenzyl Phosphate

Dibenzyl Phosphate Is Mainly Used As An Intermediate In Organic And Pharmaceutical Synthesis. It Serves As A Protected Phosphate Group In Multistep Reactions, Allowing Controlled Formation Of Phosphate Esters During Drug And Nucleotide Development.

Versatility in Chemical Synthesis

Dibenzyl Phosphate is an essential intermediate for organic and pharmaceutical chemists. Its unique structure enables controlled introduction of phosphate groups, crucial for multi-step synthesis of drugs and nucleotides. Its reactive ester functionality and aromatic stability enhance its adaptability across diverse synthesis pathways.


Quality and Specifications

Produced to stringent standards in India, Dibenzyl Phosphate achieves 96-98% purity and appears as a white crystalline solid. Its slight solubility in organic solvents and melting range of 78-80C make it suitable for numerous reaction conditions. The compound is valued for its reliable performance in industrial settings.


Benefits of Use

Using Dibenzyl Phosphate in synthesis provides precision during phosphate ester formation, reducing unwanted side reactions. Its role as a protected phosphate group in pharmaceutical manufacturing streamlines processes and improves yields, ultimately supporting efficient drug development and specialized chemical production.

FAQ's of Dibenzyl Phosphate:


Q: How is Dibenzyl Phosphate used in pharmaceutical synthesis?

A: Dibenzyl Phosphate serves as a protected phosphate group during multistep pharmaceutical synthesis, enabling controlled formation of phosphate esters essential for developing drugs and nucleotides.

Q: What is the physical appearance of Dibenzyl Phosphate?

A: It is a white crystalline solid, which makes handling and identification straightforward during industrial and laboratory processes.

Q: When should Dibenzyl Phosphate be used in chemical synthesis?

A: This compound is best utilized when precise incorporation of phosphate esters is required, particularly in intermediated steps of organic and pharmaceutical reaction sequences.

Q: Where is Dibenzyl Phosphate manufactured and supplied?

A: Dibenzyl Phosphate is manufactured and supplied in India by specialized chemical producers for industrial applications.

Q: What is the solubility profile of Dibenzyl Phosphate?

A: Dibenzyl Phosphate is slightly soluble in organic solvents, which allows it to be incorporated into various reaction mixtures without rapid dissolution.

Q: How does Dibenzyl Phosphate benefit industrial synthesis processes?

A: By acting as a protected phosphate group, it enhances process reliability, reduces side reactions, and improves the yield of target compounds, providing significant benefits for drug and specialty chemical manufacturing.

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