Why N-Boc-1-Amino-Cyclopropanemethanol (CAS 107017-73-2) is a Key Building Block for Chemical Synthesis
The field of organic synthesis is constantly seeking novel and efficient building blocks to construct complex molecular architectures. Among these, N-Boc-1-Amino-Cyclopropanemethanol, bearing the CAS number 107017-73-2, has emerged as a compound of significant interest. Its unique combination of a cyclopropane ring, a protected amine (Boc group), and a hydroxyl group makes it an exceptionally versatile intermediate for a wide array of chemical transformations. NINGBO INNO PHARMCHEM CO.,LTD., a prominent chemical supplier in China, highlights the importance of this molecule in modern chemical synthesis, particularly for pharmaceutical applications.
The Boc (tert-butyloxycarbonyl) protecting group is a cornerstone of modern organic synthesis, offering a robust yet easily removable shield for amine functionalities. This strategic protection is vital when synthesizing intricate molecules, allowing chemists to perform selective modifications elsewhere in the structure. The N-Boc-1-Amino-Cyclopropanemethanol benefits greatly from this feature, facilitating controlled reactions and improving overall synthetic yields. Researchers often seek to buy or purchase this specific compound for its reliability in complex synthetic pathways. The cyclopropane moiety itself contributes unique conformational constraints and reactivity patterns, which can be leveraged to design molecules with specific biological or material properties. Understanding the price dynamics and availability from reputable sources, such as manufacturers in China, is key for planning synthetic projects.
The chemical literature frequently cites N-Boc-1-Amino-Cyclopropanemethanol in the synthesis of various pharmaceutical targets and advanced materials. Its utility as a pharmaceutical intermediate is well-established, serving as a precursor to numerous drug candidates. The hydroxyl group can undergo esterification, etherification, or oxidation, while the Boc-protected amine can be deprotected and subsequently acylated, alkylated, or coupled. This multi-functional nature makes it an invaluable tool for medicinal chemists. When searching for ‘pharmaceutical synthesis building blocks’, this compound often appears due to its proven track record.
For any research and development endeavor, securing a consistent supply of high-quality reagents is critical. NINGBO INNO PHARMCHEM CO.,LTD. emphasizes the importance of sourcing N-Boc-1-Amino-Cyclopropanemethanol from reputable manufacturers who adhere to strict quality control measures. Purity levels, often specified as 98% or higher, directly impact the success of downstream reactions and the integrity of the final product. The term 'Boc-1-Aminocyclopropylmethanol supplier China' often leads to companies that can provide this assurance, enabling efficient procurement. The ability to obtain this essential chemical at a competitive price from a trusted manufacturer further strengthens its appeal for both academic research and industrial production.
In summary, N-Boc-1-Amino-Cyclopropanemethanol (CAS 107017-73-2) is a prime example of a sophisticated chemical building block that empowers chemists. Its structural features and the strategic advantage offered by the Boc protecting group make it indispensable in modern organic synthesis. By choosing to partner with experienced chemical manufacturers in China like NINGBO INNO PHARMCHEM CO.,LTD., researchers and companies can ensure access to high-purity materials, thereby accelerating innovation and achieving their synthetic goals effectively.
Perspectives & Insights
Logic Thinker AI
“Understanding the price dynamics and availability from reputable sources, such as manufacturers in China, is key for planning synthetic projects.”
Molecule Spark 2025
“The chemical literature frequently cites N-Boc-1-Amino-Cyclopropanemethanol in the synthesis of various pharmaceutical targets and advanced materials.”
Alpha Pioneer 01
“Its utility as a pharmaceutical intermediate is well-established, serving as a precursor to numerous drug candidates.”