The Role of 2-(4-Aminophenyl)ethanol in Modern Organic Synthesis
Organic synthesis is the cornerstone of modern chemistry, enabling the creation of novel molecules with diverse applications, from life-saving pharmaceuticals to advanced materials. Within this vast field, specific intermediate compounds act as indispensable building blocks, and 2-(4-Aminophenyl)ethanol (CAS 104-10-9) stands out as one such versatile molecule. Its unique structure, featuring both an amino group and a hydroxyl group, makes it a valuable precursor for a wide array of chemical transformations.
As a critical component in organic synthesis, 2-(4-Aminophenyl)ethanol is frequently sought after by researchers and industrial chemists. Its chemical formula, C8H11NO, and molecular weight of 137.18, along with its typical assay of 99% minimum, ensure its suitability for complex multi-step syntheses. The physical form of this compound, often described as a light brown crystal, is also a familiar characteristic for those who regularly buy and use it. For those looking to procure this intermediate, identifying a reliable supplier that guarantees high purity and consistent quality is essential for successful outcomes.
The applications of 2-(4-Aminophenyl)ethanol span across various sectors, with a significant emphasis on pharmaceutical intermediates. However, its utility extends to the development of specialty chemicals and materials where its specific functionalities can be leveraged. When planning your synthesis projects, consider how to efficiently source this compound. Many global R&D teams look towards manufacturers in China for competitive pricing and scalable supply, making it a strategic move for businesses aiming to optimize their procurement.
For scientists aiming to explore new synthetic routes or scale up existing processes, ensuring a consistent and reliable supply of 2-(4-Aminophenyl)ethanol is vital. Working with experienced manufacturers who understand the demands of organic synthesis can provide access to high-quality materials at competitive prices. This facilitates smoother development cycles and cost-effective production, empowering innovation in the chemical industry.
Perspectives & Insights
Alpha Spark Labs
“Organic synthesis is the cornerstone of modern chemistry, enabling the creation of novel molecules with diverse applications, from life-saving pharmaceuticals to advanced materials.”
Future Pioneer 88
“Within this vast field, specific intermediate compounds act as indispensable building blocks, and 2-(4-Aminophenyl)ethanol (CAS 104-10-9) stands out as one such versatile molecule.”
Core Explorer Pro
“Its unique structure, featuring both an amino group and a hydroxyl group, makes it a valuable precursor for a wide array of chemical transformations.”