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(1S 4R)-4-Aminocyclopent 2-enecarboxylic acid
(1S 4R)-4-Aminocyclopent 2-enecarboxylic acid

(1S 4R)-4-Aminocyclopent 2-enecarboxylic acid

MOQ : 1 Ton

(1S 4R)-4-Aminocyclopent 2-enecarboxylic acid Specification

  • Storage
  • Freezer
  • Place of Origin
  • China
  • Molecular Formula
  • C6H9NO2
  • Molecular Weight
  • 127.14 Grams (g)
  • Other Names
  • (-)-(1S,4R)-GAMMA-HOMOCYCLOLEU-2-ENE;(-)-(1S,4R)-4-AMINOCYCLOPENT-2-ENECARBOXYLIC ACID;(1S,4R)-4-AMINOCYCLOPENT-2-ENECARBOXYLIC ACID;(-)-(1R,4S)-1-amino-cyclopent-2-ene-4-carboxylic acid
  • CAS No
  • 168471-40-7
  • Grade
  • Medicine Grade
  • Usage
  • intermediate
  • Purity
  • 99%min
  • Appearance
  • solid
  • Application
  • Pharmaceutical Industry
  • Form
  • Solid
 

(1S 4R)-4-Aminocyclopent 2-enecarboxylic acid Trade Information

  • Minimum Order Quantity
  • 1 Ton
  • FOB Port
  • Shanghai
  • Payment Terms
  • Letter of Credit (L/C), Letter of Credit at Sight (Sight L/C), Paypal, Telegraphic Transfer (T/T)
  • Supply Ability
  • 1000 Tons Per Week
  • Delivery Time
  • 15 Days
  • Sample Available
  • Yes
  • Sample Policy
  • Contact us for information regarding our sample policy
  • Packaging Details
  • foil/bag/bottle
  • Main Export Market(s)
  • Australia, North America, South America, Eastern Europe, Western Europe, Middle East, Africa, Central America, Asia
 

About (1S 4R)-4-Aminocyclopent 2-enecarboxylic acid

Being a customer focused organization, we are engaged in offering(1S,4R)-4-Aminocyclopent-2-enecarboxylic acid. demanded in the international market. Offered products are formulated by our trained professionals from quality ingredients and chemicals, procured from the reliable vendors of the market. We are able to offer the(1S,4R)-4-Aminocyclopent-2-enecarboxylic acidin various quantities and packaging sizes to meet the exact demands of our esteemed customers.

  • CAS NO.: 168471-40-7
  • Molecular Weight: C6H9NO2
  • Formula Weight: 127.14


Premium Pharmaceutical Intermediate

This compound serves as a crucial building block in the pharmaceutical industry. Its excellent purity and solid form ensure high performance during drug synthesis. Manufactured in China, it is supplied globally, supporting innovation and development in medicine. With a medicine-grade specification, it offers reliability and safety for scientific and industrial applications.


Secure Storage and Handling

(1S,4R)-4-Aminocyclopent-2-enecarboxylic acid should be stored in a freezer below standard room temperatures to preserve its chemical integrity. Solid-state handling makes it easier to measure and utilize in laboratory and manufacturing environments. Following recommended storage practices ensures a long shelf life and maintains product quality for consistent results.

FAQs of (1S 4R)-4-Aminocyclopent 2-enecarboxylic acid:


Q: How should (1S,4R)-4-Aminocyclopent-2-enecarboxylic acid be stored for optimal stability?

A: This compound should be stored in a freezer to maintain its chemical stability and prevent potential degradation. Freezing conditions help retain its purity and efficacy during storage periods.

Q: What is the primary use of (1S,4R)-4-Aminocyclopent-2-enecarboxylic acid?

A: It is mainly utilized as an intermediate in the pharmaceutical industry. Researchers and manufacturers rely on it for the synthesis of advanced medicinal compounds and drug development processes.

Q: When should I consider using this compound in pharmaceutical manufacturing?

A: You should consider using (1S,4R)-4-Aminocyclopent-2-enecarboxylic acid when a high-purity, solid intermediate is required for the synthesis of complex pharmaceutical agents. Its consistent quality makes it suitable for demanding medication production workflows.

Q: Where can I source authentic (1S,4R)-4-Aminocyclopent-2-enecarboxylic acid?

A: The compound is widely available from established manufacturers, exporters, and suppliers in China. Ensure you procure from verified distributors to guarantee quality and regulatory compliance.

Q: What benefits does this compound offer in drug synthesis?

A: Its high purity (99% minimum) and stable physical form enhance reaction efficiency and product integrity. These qualities minimize impurities and streamline pharmaceutical manufacturing processes, offering reliable results.

Q: How does the process of using this intermediate support pharmaceutical innovation?

A: By integrating this compound into synthesis pathways, pharmaceutical companies can efficiently develop new and complex drug molecules. Its versatility and quality contribute significantly to innovation in medicine.

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