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Ethyl N-piperazinecarboxylate CAS:120-43-4

Ethyl N-piperazinecarboxylate is a chemical compound widely used in pharmaceutical and research applications. With a molecular formula of C9H18N2O2, it is a colorless liquid that serves as an important building block in the synthesis of various therapeutic and research compounds. Its unique structure and reactivity make it valuable for drug discovery and development, particularly in the creation of pharmacologically active molecules.


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Application and Effect:

Ethyl N-piperazinecarboxylate finds extensive use in pharmaceutical synthesis and research applications. One significant application of this compound is its role as a versatile intermediate in the synthesis of pharmaceutical drugs. It serves as a key building block in the preparation of diverse therapeutic agents, allowing chemists to introduce specific functionalities or structural modifications to enhance drug efficacy or minimize side effects. By incorporating Ethyl N-piperazinecarboxylate into drug synthesis, researchers can optimize lead compounds and develop new pharmaceuticals targeting various diseases and conditions. Moreover, this compound plays a crucial role in medicinal chemistry research. Medicinal chemists utilize Ethyl N-piperazinecarboxylate to explore structure-activity relationships (SAR) by modifying its structure and evaluating resulting biological activities. By systematically altering the functional groups attached to the piperazine core, researchers gain insights into interactions between molecules and their biological targets. These SAR studies facilitate the optimization of lead compounds and the development of more potent and selective drugs, ultimately contributing to advancements in pharmaceutical research. Additionally, Ethyl N-piperazinecarboxylate is valuable in biochemical and neuroscience research. Its ability to interact with neurotransmitter receptors, such as serotonin and dopamine receptors, makes it a critical tool in studying receptor function and drug-receptor interactions. Scientists employ this compound to evaluate the effects of modifications on target binding affinity and selectivity, aiding in the understanding of drug action and potential treatment options for neurological disorders. Furthermore, Ethyl N-piperazinecarboxylate finds utility in neuropharmacology research, where it is utilized to investigate the mechanisms underlying neurological disorders. The compound's potential interactions with specific receptor subtypes involved in neurotransmission make it valuable for studying neuronal function and exploring potential treatments for neurological conditions. Researchers rely on this compound to evaluate its effects on neurotransmitter systems and assess its potential as a therapeutic agent for conditions such as schizophrenia, depression, and anxiety disorders. When working with Ethyl N-piperazinecarboxylate, it is essential to follow proper safety precautions. The compound should be handled in well-ventilated areas, and personal protective equipment, including gloves and goggles, should be used to minimize direct contact. Additionally, ensuring proper storage conditions, such as keeping the compound in a cool and dry environment, is necessary for maintaining its integrity and stability. In conclusion, Ethyl N-piperazinecarboxylate is a versatile compound widely used in pharmaceutical synthesis and research endeavors. Its importance as an intermediate in drug synthesis, as well as its application in medicinal chemistry and neuroscience research, highlights its significance in advancing scientific knowledge and drug development. The compound's unique properties and potential for interaction with biological targets make it a valuable tool for organic chemists and researchers in various scientific and pharmaceutical disciplines.

Product Sample:

L-Arginine1
L-Arginine2

Product Packing:

L-Arginin3

Additional Information:

Composition C7H14N2O2
Assay 99%
Appearance white powder
CAS No.  120-43-4
Packing Small and bulk
Shelf Life 2 years
Storage Store in cool and dry area
Certification ISO.

 


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