Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride - 100mg

REF #: 3D-JBD31889
Short description

Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride

Discover the exceptional quality of Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride, a versatile chemical compound with a molecular weight of 267.15 g/mol and a purity of at least 95%. This pyridine-based amino acid ester offers a unique blend of properties, making it a valuable asset for a wide range of applications in the fields of organic synthesis, pharmaceutical development, and more. Crafted with precision and attention to detail, this compound is an essential tool for researchers and chemists seeking to push the boundaries of their work. Unlock the potential of this remarkable chemical and elevate your projects to new heights of success.

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  • Procurenet Team Tshim Sha Tsui
    Hong Kong Hong Kong 3 years

Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride

Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride is a highly specialized chemical compound that holds immense potential for researchers and scientists across various fields. With its unique molecular structure and exceptional purity, this compound has become a valuable asset in the realms of pharmaceutical development, chemical synthesis, and beyond.

At the heart of this compound lies a pyridine ring, strategically positioned to impart distinct chemical properties. The presence of the amino and ester functionalities further enhances its versatility, making it a sought-after building block for a wide range of applications. With a molecular weight of 267.15 g/mol and a chemical formula of C10H16Cl2N2O2, this compound is meticulously crafted to meet the highest standards of quality and purity, boasting a minimum purity of 95%.

Pharmaceutical Research and Development

In the dynamic world of pharmaceutical research, Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride shines as a crucial starting material and intermediate. Its unique structural features and chemical reactivity make it an invaluable tool in the synthesis of novel drug candidates, targeting a wide spectrum of therapeutic areas. Researchers can leverage the compound's properties to develop innovative pharmaceuticals with enhanced efficacy, selectivity, and safety profiles, ultimately improving patient outcomes.

The pyridine moiety and the amino-ester functionality of this compound offer a versatile platform for chemical transformations, enabling the creation of diverse molecular scaffolds. This versatility allows researchers to explore new avenues in drug discovery, unlocking the potential for groundbreaking therapeutic advancements.

Chemical Synthesis and Material Science

Beyond the pharmaceutical realm, Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride finds its applications in the realm of chemical synthesis and material science. Its distinct chemical properties and reactivity make it a valuable reagent and building block for the development of novel compounds and materials with tailored characteristics.

In the field of material science, researchers can harness the unique properties of this compound to engineer advanced materials with enhanced performance, such as improved thermal stability, mechanical strength, or optical properties. These materials can find applications in a wide range of industries, from electronics to energy storage, opening up new avenues for innovation and technological advancements.

Handling and Storage

Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride should be handled with care, as its specific hazard information is yet to be confirmed. It is recommended to work in a well-ventilated area, wear appropriate personal protective equipment, and follow standard laboratory safety protocols. For optimal storage and to maintain the compound's purity and stability, it should be kept in a cool, dry environment, away from direct light and moisture.

Unlocking the Potential

To fully harness the potential of Ethyl 2-amino-2-(pyridin-3-yl)propanoate dihydrochloride, researchers and scientists are encouraged to consult the detailed product information, including technical data, safety guidelines, and relevant literature. By leveraging the wealth of resources available, you can unlock new possibilities in your research and development endeavors, contributing to groundbreaking advancements in the fields of pharmaceuticals, material science, and beyond.

  • Formula: C10H16Cl2N2O2
  • Mdl: MFCD29763137
  • Molecular weight: 267.15 g/mol
  • Purity: Min. 95%
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