Sourcing D-3-(3-Thienyl)-alanine: A Guide for Researchers and Buyers
For researchers and chemists engaged in cutting-edge synthesis projects, the reliable procurement of high-quality chemical compounds is paramount. D-3-(3-Thienyl)-alanine, a chiral amino acid derivative with CAS number 152612-26-5, is one such compound that requires careful sourcing due to its specialized applications in pharmaceuticals and organic synthesis.
When looking to buy D-3-(3-Thienyl)-alanine, several factors should be considered. Firstly, purity is crucial. Typical specifications range from 97% to 98%, ensuring that the compound performs optimally in sensitive chemical reactions and research protocols. Secondly, understanding its chemical properties, such as its presentation as a white to off-white powder, is important for handling and storage.
The primary applications for D-3-(3-Thienyl)-alanine lie in its use as a chiral building block for peptide synthesis and as a vital intermediate in the development of new pharmaceutical agents. Its unique thienyl group and D-configuration enable the creation of molecules with specific biological activities and enhanced stability.
For those sourcing these critical compounds, Chinese suppliers have become a significant global resource. Companies like NINGBO INNO PHARMCHEM CO.,LTD. are recognized for their commitment to producing and supplying high-quality D-3-(3-Thienyl)-alanine, catering to the stringent demands of the global scientific community. When establishing a relationship with a supplier, it's beneficial to inquire about their quality control processes, lead times, and their ability to provide necessary documentation such as Certificates of Analysis (CoA).
Navigating the procurement process for specialty chemicals can be complex, but with the right information and reliable partners, it becomes a streamlined process. Ensuring a consistent and dependable supply of compounds like D-3-(3-Thienyl)-alanine is key to maintaining the momentum of research and development projects.
When looking to buy D-3-(3-Thienyl)-alanine, several factors should be considered. Firstly, purity is crucial. Typical specifications range from 97% to 98%, ensuring that the compound performs optimally in sensitive chemical reactions and research protocols. Secondly, understanding its chemical properties, such as its presentation as a white to off-white powder, is important for handling and storage.
The primary applications for D-3-(3-Thienyl)-alanine lie in its use as a chiral building block for peptide synthesis and as a vital intermediate in the development of new pharmaceutical agents. Its unique thienyl group and D-configuration enable the creation of molecules with specific biological activities and enhanced stability.
For those sourcing these critical compounds, Chinese suppliers have become a significant global resource. Companies like NINGBO INNO PHARMCHEM CO.,LTD. are recognized for their commitment to producing and supplying high-quality D-3-(3-Thienyl)-alanine, catering to the stringent demands of the global scientific community. When establishing a relationship with a supplier, it's beneficial to inquire about their quality control processes, lead times, and their ability to provide necessary documentation such as Certificates of Analysis (CoA).
Navigating the procurement process for specialty chemicals can be complex, but with the right information and reliable partners, it becomes a streamlined process. Ensuring a consistent and dependable supply of compounds like D-3-(3-Thienyl)-alanine is key to maintaining the momentum of research and development projects.
Perspectives & Insights
Bio Analyst 88
“D-3-(3-Thienyl)-alanine, a chiral amino acid derivative with CAS number 152612-26-5, is one such compound that requires careful sourcing due to its specialized applications in pharmaceuticals and organic synthesis.”
Nano Seeker Pro
“When looking to buy D-3-(3-Thienyl)-alanine, several factors should be considered.”
Data Reader 7
“Typical specifications range from 97% to 98%, ensuring that the compound performs optimally in sensitive chemical reactions and research protocols.”