Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy]
Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy]: Advanced Peptide Synthesis Building Block Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy] is a highly specialized building block for peptide synthesis, designed to facilitate the creation of complex and precise peptides. This compound is a derivative
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Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy]
Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy]: Advanced Peptide Synthesis Building Block
Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy] is a highly specialized building block for peptide synthesis, designed to facilitate the creation of complex and precise peptides. This compound is a derivative of L-Tyrosine, a non-essential amino acid, which is widely used in the synthesis of bioactive peptides. Our product stands out for its exceptional purity and quality, ensuring reliable and reproducible results in your research and development endeavors.- High Purity: Our Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy] is >98% pure, guaranteeing the integrity of your peptide synthesis process.
- Quality Assured: Rigorous quality control measures ensure that each batch meets the highest standards of purity and consistency.
Comprehensive Product Specifications
This compound is characterized by its unique chemical formula, C24H19Cl2NO5, and a molecular weight of 472.3 g/mol. It is identified by the CAS RN 1391508-43-2 and features a specific SMILES notation for easy identification and integration into various synthetic pathways. Our Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy] is suitable for use in both academic research and industrial applications, providing a versatile tool for peptide synthesis.- Chemical Formula: C24H19Cl2NO5
- Molecular Weight: 472.3 g/mol
- CAS RN: 1391508-43-2
Applications and Benefits
Premium Quality Fmoc-l-tyr(3,5-cl2)-oh Enjoy 75% Off [d9CrjxAy] is an essential component in the synthesis of bioactive peptides, which are widely used in pharmaceutical research, biotechnology, and drug discovery. Its unique properties make it particularly valuable for the development of therapeutic agents, diagnostics, and research tools. By incorporating this high-quality building block into your synthesis workflow, you can achieve improved yields and purities, leading to more reliable and reproducible results.- Pharmaceutical Research: Facilitates the development of novel therapeutic agents and drug candidates.
- Biotechnology: Enables the creation of biologically active peptides for research and diagnostic applications.
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