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  • 2-EthylbutyricAcid CAS:88-09-5

    2-EthylbutyricAcid CAS:88-09-5

    2-Ethylbutyric acid, an organic carboxylic acid, is commonly employed as a flavoring agent and as a precursor in the synthesis of fragrances, pharmaceuticals, and specialty chemicals. Its distinct aroma and versatile chemical nature make it valuable in diverse industrial processes.

     

  • 3-Methoxy-1-butanol CAS:2517-43-3

    3-Methoxy-1-butanol CAS:2517-43-3

    3-Methoxy-1-butanol is a chemical compound with a molecular structure containing a methoxy group and a four-carbon chain. It is recognized for its solvent properties and mild, pleasant odor, making it suitable for various industrial and commercial applications.

     

  • 3-METHYL-3-BUTEN-1-OL  CAS:763-32-6

    3-METHYL-3-BUTEN-1-OL CAS:763-32-6

    3-Methyl-3-buten-1-ol, an unsaturated alcohol, is commonly used as a versatile intermediate in organic synthesis, particularly in the production of fragrances, flavorings, and pharmaceutical intermediates. Its distinct structure and reactivity make it valuable for creating compounds with diverse functionalities and applications.

     

  • 3-Methyl-2-buten-1-ol CAS:556-82-1

    3-Methyl-2-buten-1-ol CAS:556-82-1

    3-Methyl-2-buten-1-ol, an unsaturated alcohol, is widely used as a precursor in organic synthesis, particularly in the production of fragrances, flavorings, and pharmaceutical intermediates. Its distinct structure and reactivity make it valuable for creating compounds with diverse functionalities and applications.

     

  • 3-Hydroxybenzaldehyde CAS:100-83-4

    3-Hydroxybenzaldehyde CAS:100-83-4

    3-Hydroxybenzaldehyde, also known as m-hydroxybenzaldehyde, is an aromatic organic compound with the chemical formula C7H6O2. It exists as a white crystalline solid at room temperature and is characterized by its distinct odor. This compound is widely recognized for its significance in organic synthesis and its versatility in various chemical applications.

     

  • 1,1-cyclopropanedicarboxylate CAS:598-10-7

    1,1-cyclopropanedicarboxylate CAS:598-10-7

    1,1-Cyclopropanedicarboxylate is a chemical compound with a unique cyclopropane ring structure and two carboxylate groups. It is known for its distinctive molecular configuration and has applications in various fields due to its reactivity and structural properties.

  • Boc-D-Tyr(2-Br-Z)-OH CAS:81189-61-9

    Boc-D-Tyr(2-Br-Z)-OH CAS:81189-61-9

    Boc-D-Tyr(2-Br-Z)-OH is a key chemical compound used in peptide synthesis and pharmaceutical research. With a molecular formula of C18H21BrN2O6, this product is widely recognized for its high purity and reliability, making it an essential component for the creation of specific peptide compounds in laboratory settings. Boc-D-Tyr(2-Br-Z)-OH plays a crucial role in organic synthesis, particularly in the amidation and deprotection steps involved in peptide assembly. Its stability and quality make it a valuable tool for researchers and scientists working on drug discovery and development, contributing to advancements in pharmaceuticals and biochemical studies.

  • Boc-Phe-OMe CAS:51987-73-6

    Boc-Phe-OMe CAS:51987-73-6

    Boc-Phe-OMe is a vital reagent used in peptide synthesis and solid-phase chemistry. This compound, a derivative of the amino acid phenylalanine, provides high purity and stability for efficient modification of peptides and proteins. Serving as a protected form of phenylalanine, Boc-Phe-OMe enables controlled incorporation of phenylalanine residues into peptide chains for diverse bioconjugation and peptide synthesis applications. It is an essential tool for researchers and chemists involved in drug development, proteomics, and bioconjugation chemistry.

  • Boc-Nle-OH·DCHA CAS:21947-32-0

    Boc-Nle-OH·DCHA CAS:21947-32-0

    Boc-Nle-OH·DCHA is a crucial reagent used in peptide synthesis and solid-phase chemistry. This compound, a derivative of the amino acid norleucine, offers high purity and stability for efficient modification of peptides and proteins. Boc-Nle-OH·DCHA serves as a protected form of norleucine, enabling controlled incorporation of norleucine residues into peptide chains for diverse bioconjugation and peptide synthesis applications. It is an essential tool for researchers and chemists involved in drug development, proteomics, and bioconjugation chemistry.

  • Boc-D-Tyr(2,6-Cl2-Bzl)-OH CAS:69541-62-4

    Boc-D-Tyr(2,6-Cl2-Bzl)-OH CAS:69541-62-4

    Boc-D-Tyr(2,6-Cl2-Bzl)-OH is a crucial chemical compound widely used in peptide synthesis and pharmaceutical research. With a molecular formula of C23H22Cl2NO5, this product is highly valued for its high purity and reliability, serving as an essential component for producing specific peptide compounds in laboratory settings. Boc-D-Tyr(2,6-Cl2-Bzl)-OH plays a significant role in organic synthesis, particularly in the amidation and deprotection steps involved in peptide assembly. Its stability and quality make it a valuable tool for researchers and scientists working on drug discovery and development, contributing to advancements in pharmaceuticals and biochemical studies.

  • Boc-D-Phe-OH CAS:18942-49-9

    Boc-D-Phe-OH CAS:18942-49-9

    Boc-D-Phe-OH is a crucial reagent used in peptide synthesis and solid-phase chemistry. This compound, a derivative of the amino acid D-phenylalanine, provides high purity and stability for efficient modification of peptides and proteins. Serving as a protected form of D-phenylalanine, Boc-D-Phe-OH enables controlled incorporation of D-phenylalanine residues into peptide chains for diverse bioconjugation and peptide synthesis applications. It is an essential tool for researchers and chemists involved in drug development, proteomics, and bioconjugation chemistry.

  • Boc-Tyr(2-Br-Z)-OH CAS:47689-67-8

    Boc-Tyr(2-Br-Z)-OH CAS:47689-67-8

    Boc-Tyr(2-Br-Z)-OH is a chemical compound widely used in the field of organic synthesis. With a molecular formula of C18H21BrN2O6, this product plays a crucial role in peptide synthesis and pharmaceutical research. Its high purity and quality make it suitable for various laboratory applications, enabling researchers to efficiently produce specific peptide compounds for a wide range of scientific studies. Boc-Tyr(2-Br-Z)-OH is known for its stability and reliability, making it an essential component in the development of new pharmaceuticals and biochemical research.