N-(2-Hydroxyethyl)-1,2,3,6- Tetrahydrophthalimide

N-(2-Hydroxyethyl)-1,2,3,6- Tetrahydrophthalimide
N-(2-Hydroxyethyl)-1,2,3,6- Tetrahydrophthalimide
N-(2-Hydroxyethyl)-1,2,3,6- Tetrahydrophthalimide

N-(2-Hydroxyethyl)-1,2,3,6- Tetrahydrophthalimide Specification

  • Other Names
  • N-(2-Hydroxyethyl)-1,2,3,6-Tetrahydrophthalimide
  • CAS No
  • 4439-20-7
  • Grade
  • Other
  • Usage
  • N-(2-Hydroxyethyl)-1,2,3,6-Tetrahydrophthalimide is a versatile intermediate commonly used in the synthesis of active pharmaceutical ingredients (APIs) and specialty chemicals. It provides a stable, reactive structure ideal for chemical modifications, contributing to the development of drugs targeting various therapeutic areas. Our high-purity grade ensures consistent quality for pharmaceutical manufacturing.
  • Color
  • White
  • Form
  • Powder
 

N-(2-Hydroxyethyl)-1,2,3,6- Tetrahydrophthalimide Trade Information

  • Minimum Order Quantity
  • 5 Kilograms
  • Payment Terms
  • Cash Advance (CA)
  • Delivery Time
  • 1 Week
  • Sample Available
  • No
  • Packaging Details
  • HDPE Drum
  • Certifications
  • ISO, HACCP, HALAL, KOSHER
 

About N-(2-Hydroxyethyl)-1,2,3,6- Tetrahydrophthalimide

N-(2-Hydroxyethyl)-1,2,3,6-Tetrahydrophthalimide is a versatile intermediate commonly used in the synthesis of active pharmaceutical ingredients (APIs) and specialty chemicals. It provides a stable, reactive structure ideal for chemical modifications, contributing to the development of drugs targeting various therapeutic areas. Our high-purity grade ensures consistent quality for pharmaceutical manufacturing.



Key Features and Specifications

N-(2-Hydroxyethyl)-1,2,3,6-Tetrahydrophthalimide is characterized by its white, powdered form, and high purity, making it suitable for sensitive pharmaceutical syntheses. Our product meets stringent industry standards to guarantee performance in various chemical processes.


Applications in Pharmaceutical and Chemical Industries

This intermediate is extensively used in the formulation of active pharmaceutical ingredients (APIs), facilitating the creation of drugs across multiple therapeutic classes. Its stable and modifiable structure also supports the production of specialty chemicals, broadening its application spectrum.

FAQs of N-(2-Hydroxyethyl)-1,2,3,6- Tetrahydrophthalimide:


Q: What is the primary usage of N-(2-Hydroxyethyl)-1,2,3,6-Tetrahydrophthalimide in industry?

A: N-(2-Hydroxyethyl)-1,2,3,6-Tetrahydrophthalimide is primarily used as an intermediate in the synthesis of active pharmaceutical ingredients (APIs) and specialty chemicals, supporting the development of a wide range of pharmaceutical products.

Q: How does the structure of N-(2-Hydroxyethyl)-1,2,3,6-Tetrahydrophthalimide benefit pharmaceutical synthesis?

A: Its stable and reactive structure allows for diverse chemical modifications, enabling efficient design and manufacturing of pharmaceuticals. This versatility is crucial in the development of drugs aimed at different medical conditions.

Q: When should this compound be chosen over other intermediates?

A: This compound is ideal when high purity, stability, and reactivity are needed for complex chemical transformations, particularly in pharmaceutical and specialty chemical applications that require precise modification.

Q: Where can I source N-(2-Hydroxyethyl)-1,2,3,6-Tetrahydrophthalimide in India?

A: You can obtain this compound from reputable dealers, manufacturers, suppliers, and traders specializing in pharmaceutical and specialty chemical intermediates throughout India.

Q: What is the typical process for using this compound in pharmaceutical manufacturing?

A: It is incorporated as a key intermediate that undergoes further chemical transformations to form the desired active pharmaceutical ingredients, ensuring stability and compatibility throughout the manufacturing process.

Q: What are the advantages of using high-purity grades of this compound?

A: Utilizing high-purity grades guarantees consistent performance and quality in end products, reducing impurities and improving safety and efficacy in pharmaceutical synthesis.

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