Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc]
Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc]: A Premium Chemical Synthesis Building Block Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc], also known as N-Methyl-D-β-homoleucine-O-hydroxylamine, is a highly effective building block for the synthesis of peptides and other complex organic mole
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Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc]: A Premium Chemical Synthesis Building Block
Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc], also known as N-Methyl-D-β-homoleucine-O-hydroxylamine, is a highly effective building block for the synthesis of peptides and other complex organic molecules. This versatile compound is designed to enhance the efficiency and purity of peptide synthesis reactions. Its unique structure and high purity make it an essential tool for researchers in the fields of pharmaceuticals, biochemistry, and materials science.- High Purity: Ensures the highest quality of the final product.
- Efficient Synthesis: Facilitates quick and reliable synthesis processes.
- Applications: Widely used in the preparation of peptides, antibiotics, and other pharmaceuticals.
Key Properties and Specifications of Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc]
Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc] is a solid compound with a molecular formula of C20H21NO4 and a molecular weight of 339.4. It is stored at 2-8°C to maintain its stability and effectiveness. The CAS Registry Number for this compound is 1460306-60-8, and it has the SMILES notation C[C@H](CC(=O)O)N(C)C(=O)OCC1C2=CC=CC=C2C3=CC=CC=C13.- Storage Conditions: Sealed in dry conditions, 2-8°C.
- CAS RN: 1460306-60-8.
- MDL No.: MFCD31580005.
Applications and Benefits of Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc]
Last Chance Fmoc-n-me-d-β-homoala-oh Best Choice [UEt57Xhc] is widely used in peptide synthesis for the preparation of peptides with various biological activities. Its high purity and efficiency make it ideal for research and development in the pharmaceutical industry. Additionally, this compound is valuable in the synthesis of antibiotics and other pharmaceuticals, contributing to advancements in medicine and health care.- Pharmaceutical Research: Enhances the efficiency of peptide synthesis, leading to faster development of new drugs.
- Biochemistry: Enables the study of biological processes and the creation of new materials.
- Materials Science: Facilitates the development of novel materials with unique properties.
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