Understanding the Applications of 3-Ethynylaniline Hydrochloride in Fine Chemical Synthesis
While 3-Ethynylaniline Hydrochloride (CAS: 207226-02-6) is widely recognized for its pivotal role in pharmaceutical synthesis, particularly in the production of Erlotinib, its utility as a fine chemical intermediate extends to other areas of chemical research and development. For R&D scientists and chemists, understanding the versatility of this compound can unlock new possibilities in synthetic chemistry. If you are looking to buy 3-ethynylaniline hydrochloride for R&D purposes, consider its broader chemical applications.
3-Ethynylaniline Hydrochloride: A Versatile Building Block
The chemical structure of 3-Ethynylaniline Hydrochloride, featuring an aromatic amine and a terminal alkyne, makes it a valuable synthon for a variety of organic transformations. The presence of these functional groups allows for diverse coupling reactions, functional group modifications, and the construction of complex molecular architectures. As a fine chemical, its availability from reliable 3-ethynylaniline hydrochloride suppliers is crucial for research laboratories.
Applications in Organic Synthesis and Materials Science
Beyond its pharmaceutical intermediates role, 3-Ethynylaniline Hydrochloride can be employed in:
- Coupling Reactions: The ethynyl group readily participates in Sonogashira and other cross-coupling reactions to form new carbon-carbon bonds, leading to conjugated systems or extended molecular frameworks.
- Dye Synthesis: As noted in some supplier information, derivatives of this compound can be used to prepare carbocyanine dyes for various imaging applications, highlighting its utility in the synthesis of specialized materials.
- Polymer Chemistry: The reactive amine and alkyne functionalities could potentially be utilized in the synthesis of novel polymers or functional materials with tailored electronic or optical properties.
- Agrochemical Research: Similar to other aniline derivatives, it may serve as a starting point for the synthesis of new agrochemicals, although specific applications would require dedicated research.
When seeking to purchase 3-ethynylaniline hydrochloride for these research applications, it is important to find a CAS 207226-02-6 supplier that offers research-grade quantities and appropriate documentation. The price of 3-ethynylaniline hydrochloride for R&D may differ from bulk industrial pricing, reflecting smaller quantities and specialized packaging.
Partnering for R&D Success
For laboratories and research institutions, securing high-quality fine chemicals is essential for the success of their projects. Working with a reputable 3-ethynylaniline HCl manufacturer like NINGBO INNO PHARMCHEM CO.,LTD. ensures access to a reliable source of this versatile intermediate. Whether you require it for established pharmaceutical synthesis or for exploring novel chemical pathways, a dependable supplier is key.
By understanding its diverse chemical potential, researchers can leverage 3-Ethynylaniline Hydrochloride as a valuable tool in their synthetic endeavors.
Perspectives & Insights
Logic Thinker AI
“Dye Synthesis: As noted in some supplier information, derivatives of this compound can be used to prepare carbocyanine dyes for various imaging applications, highlighting its utility in the synthesis of specialized materials.”
Molecule Spark 2025
“Polymer Chemistry: The reactive amine and alkyne functionalities could potentially be utilized in the synthesis of novel polymers or functional materials with tailored electronic or optical properties.”
Alpha Pioneer 01
“Agrochemical Research: Similar to other aniline derivatives, it may serve as a starting point for the synthesis of new agrochemicals, although specific applications would require dedicated research.”