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N-Hydroxymethyl Phthalimide
N-Hydroxymethyl Phthalimide
N-Hydroxymethyl Phthalimide
N-Hydroxymethyl Phthalimide
N-Hydroxymethyl Phthalimide
N-Hydroxymethyl Phthalimide

N-Hydroxymethyl Phthalimide

Price 519.0 INR/ Kilograms

MOQ : 1 Kilograms

N-Hydroxymethyl Phthalimide Specification

  • Physical Form
  • Solid
  • Molecular Formula
  • C9H7NO3
  • Molecular Weight
  • 177.16 g/mol Grams (g)
  • Solubility
  • Slightly soluble in water; soluble in organic solvents
  • Purity
  • 95-97%
  • Appearance
  • White crystalline solid
  • Application
  • Industrial
  • CAS No
  • 118-29-6
  • Properties
  • N-Hydroxymethyl Phthalimide is a crystalline organic compound with a molar mass of 177.16 g/mol. It is derived from phthalimide by substitution with a hydroxymethyl group, which enhances its reactivity in condensation and substitution reactions.
  • Usage
  • N-Hydroxymethyl Phthalimide Is Widely Used As An Intermediate In Organic And Polymer Chemistry. It Serves As A Key Building Block For Synthesizing N-Substituted Phthalimide Derivatives And Functionalized Compounds In Pharmaceutical And Fine Chemical Industries.
  • Melting Point
  • 147 149 C
  • Structural Formula
  • C9H7NO3
 

N-Hydroxymethyl Phthalimide 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 N-Hydroxymethyl Phthalimide

N-Hydroxymethyl Phthalimide Is Widely Used As An Intermediate In Organic And Polymer Chemistry. It Serves As A Key Building Block For Synthesizing N-Substituted Phthalimide Derivatives And Functionalized Compounds In Pharmaceutical And Fine Chemical Industries.

Key Characteristics and Composition

N-Hydroxymethyl Phthalimide is recognized for its stable crystalline structure and moderate melting point of 147-149C. Its chemical structure, C9H7NO3, combines a phthalimide base with a hydroxymethyl group, which notably increases its reactivity and utility in organic synthesis. The compound's physical properties support its application in diverse industrial processes.


Industrial Applications and Utility

Used largely as a chemical intermediate, N-Hydroxymethyl Phthalimide is crucial for developing N-substituted phthalimide derivatives. Its high purity and reactive functional group make it valuable in pharmaceutical synthesis and the production of fine chemicals, plastics, and advanced polymers. Indian manufacturers and suppliers provide this compound to global industries seeking precision and reliability.

FAQ's of N-Hydroxymethyl Phthalimide:


Q: What is the primary industrial application of N-Hydroxymethyl Phthalimide?

A: N-Hydroxymethyl Phthalimide is predominantly used as an intermediate in organic and polymer chemistry. It is a key building block for synthesizing N-substituted phthalimide derivatives and various functionalized compounds, especially in the pharmaceutical and fine chemical sectors.

Q: How is N-Hydroxymethyl Phthalimide typically used in chemical synthesis?

A: This compound is utilized for its reactive hydroxymethyl group, which facilitates condensation and substitution reactions. Chemists incorporate it in multi-step synthesis processes to generate advanced intermediates essential for pharmaceuticals and specialty chemicals.

Q: What are the physical characteristics of N-Hydroxymethyl Phthalimide?

A: N-Hydroxymethyl Phthalimide appears as a white crystalline solid with a melting point of 147-149C. It is slightly soluble in water but demonstrates good solubility in most organic solvents, making it versatile for laboratory and industrial applications.

Q: Where is N-Hydroxymethyl Phthalimide commonly manufactured and supplied?

A: The compound is manufactured and supplied by various chemical producers in India, serving both domestic and international markets with high-purity grades tailored for industrial usage.

Q: What are the benefits of using N-Hydroxymethyl Phthalimide in polymer and fine chemical industries?

A: Its enhanced reactivity and stability improve the efficiency and specificity of synthesis processes, allowing for the production of a wide array of functionalized compounds with precise molecular characteristics.

Q: When should N-Hydroxymethyl Phthalimide be selected as a synthetic intermediate?

A: It is chosen when the target synthesis involves condensation or substitution mechanisms, particularly in the development of N-substituted phthalimide derivatives or in the modification of existing molecular frameworks.

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