2-Bromoethylamine hydrobromide (CAS 2576-47-8) serves as a critical alkylating agent in organic synthesis. As a primary amine bearing a reactive bromine atom, it is indispensable for introducing the aminoethyl group into various molecular frameworks, particularly in the production of heterocyclic compounds and pharmaceutical intermediates.
Our manufacturing processes adhere to the highest E-E-A-T standards. With decades of experience in halogenation chemistry, our technical team ensures purity levels exceeding 99%. We provide comprehensive analytical reports (NMR, HPLC, MS) to guarantee reliability for global pharmaceutical laboratories.
The global demand for 2-Bromoethylamine hydrobromide is driven by the burgeoning peptide and neurological drug sectors. As a top-tier China supplier, Gentolex bridges the gap between lab-scale synthesis and industrial-scale manufacturing, offering cost-effective solutions without compromising quality.
China's chemical infrastructure offers unparalleled efficiency. Gentolex leverages a 250,000 square meter standardized facility to provide scalable and cost-effective solutions.
Unlike fragmented suppliers, Gentolex operates integrated production lines. From raw material sourcing to final crystallization, we maintain 100% traceability, insulating our clients from global market volatility.
Navigating international regulations is complex. We provide full documentation including REACH registration, SDS (Safety Data Sheets), and ISO certifications, ensuring seamless customs clearance for European and American markets.
Beyond bulk supply, our R&D center specializes in custom derivatives. Whether you require specific salt forms or protected aminoethyl variants, our chemists deliver tailored solutions for your proprietary drug development.
The role of 2-Bromoethylamine Hydrobromide is expanding into the field of Bio-conjugation and Material Science (Cationic Polymers). As precision medicine evolves, the requirement for ultra-high purity intermediates will grow by an estimated CAGR of 6.5%.
Used as a building block for anti-cancer agents and Central Nervous System (CNS) drugs. It facilitates the creation of ethylenediamine bridges essential for receptor binding.
In proteomics, it is utilized for the modification of cysteine residues, enabling researchers to study protein structures through chemical labeling.
Serves as an intermediate in the synthesis of modern plant growth regulators and pest control agents that require specific nitrogen-based functional groups.
Essential for producing cationic surfactants and water-treatment polymers, where the amino group provides the necessary charge density for flocculation.
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