The Chemical Landscape: Exploring Applications of 2-Amino-N-benzylacetamide Hydrochloride
The world of chemistry is built upon a vast array of molecules, each with unique properties and potential applications. Among these, intermediate compounds that serve as versatile building blocks are particularly crucial for driving innovation. 2-Amino-N-benzylacetamide Hydrochloride, designated by CAS number 20432-97-7, is a prime example of such a compound, finding its place in several key areas of chemical research and development.
As a white crystalline powder, this chemical entity offers a molecular formula of C9H13ClN2O and a molecular weight of 200.67 g/mol. Its structure is designed to facilitate a range of chemical reactions, making it a sought-after component for chemists aiming to synthesize novel organic molecules. When researchers decide to buy 2-amino-N-benzylacetamide hydrochloride, they are acquiring a tool that can unlock pathways to complex compounds, often with a purity level of 98% or higher, as ensured by diligent 2-amino-N-benzylacetamide hydrochloride suppliers.
One of the most prominent applications of 2-Amino-N-benzylacetamide Hydrochloride is in the synthesis of peptides and peptidomimetics. Its structure contains an amino acid-like moiety that can be incorporated into peptide chains, contributing to the development of novel therapeutic peptides or specialized biomaterials. This makes it an important molecule for those working in biochemistry and related fields.
Furthermore, its role as a pharmaceutical intermediate is significant. It can be a precursor in the synthesis of various drugs, where its specific functional groups are transformed or elaborated upon to achieve the final active pharmaceutical ingredient. The reliability of this compound ensures that drug development pipelines can proceed with greater confidence, reducing the risk of synthesis failures due to reagent quality.
In the broader field of organic synthesis, 2-Amino-N-benzylacetamide Hydrochloride serves as a valuable chemical building block for creating a wide spectrum of organic compounds. Its reactivity allows for its use in creating amide linkages, heterocycles, and other functional groups that are fundamental to many complex organic molecules. The scientific community benefits from the availability of this research chemical, as it aids in exploring new reaction methodologies and designing molecules with targeted properties.
The consistent availability of reliable data, including the CAS 20432-97-7 chemical information and detailed specifications, empowers chemists to effectively plan and execute their synthetic strategies. Understanding the various uses of 2-amino-N-benzylacetamide hydrochloride allows researchers to maximize its potential in their specific projects, contributing to advancements in chemistry, medicine, and material science.
In conclusion, 2-Amino-N-benzylacetamide Hydrochloride is a testament to the importance of specialized chemical intermediates. Its versatility and consistent quality make it an invaluable asset for chemists engaged in diverse synthetic endeavors, driving progress across multiple scientific frontiers.
Perspectives & Insights
Nano Explorer 01
“2-Amino-N-benzylacetamide Hydrochloride, designated by CAS number 20432-97-7, is a prime example of such a compound, finding its place in several key areas of chemical research and development.”
Data Catalyst One
“As a white crystalline powder, this chemical entity offers a molecular formula of C9H13ClN2O and a molecular weight of 200.”
Chem Thinker Labs
“Its structure is designed to facilitate a range of chemical reactions, making it a sought-after component for chemists aiming to synthesize novel organic molecules.”