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Catalog Number:
29325
CAS Number:
82409-02-7
1,9-Bis-Boc-1,5,9-triazanonane
Purity:
≥ 98%
Documents
$93.14 /100MG
Pack Size Availability Price
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Product Information

1,9-Bis-Boc-1,5,9-triazanonane is a versatile compound widely utilized in the field of organic synthesis and medicinal chemistry. This compound, known for its unique structure, features two tert-butoxycarbonyl (Boc) protecting groups, making it an excellent choice for researchers focusing on peptide synthesis and drug development. Its ability to protect amine functionalities while allowing for selective deprotection makes it particularly valuable in multi-step synthetic pathways.

In practical applications, 1,9-Bis-Boc-1,5,9-triazanonane has been effectively employed in the synthesis of complex molecules, including pharmaceuticals and biologically active compounds. Its stability and compatibility with various reaction conditions enhance its utility in laboratory settings. Researchers appreciate its role in facilitating the formation of peptide bonds and its potential in developing new therapeutic agents. With its favorable properties, this compound stands out as a reliable choice for professionals seeking efficiency and precision in their synthetic endeavors.

CAS Number
82409-02-7
Purity
≥ 98%
Molecular Formula
C16H33N3O4
Molecular Weight
331.45
MDL Number
MFCD11226826
PubChem ID
10404463
Melting Point
70 - 74 °C
Appearance
White powder
Conditions
Store at 0 - 8 °C
General Information
CAS Number
82409-02-7
Purity
≥ 98%
Molecular Formula
C16H33N3O4
Molecular Weight
331.45
MDL Number
MFCD11226826
PubChem ID
10404463
Melting Point
70 - 74 °C
Appearance
White powder
Conditions
Store at 0 - 8 °C
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

1,9-Bis-Boc-1,5,9-triazanonane is widely utilized in research focused on:

  • Peptide Synthesis: This compound serves as a protecting group in the synthesis of peptides, allowing researchers to selectively modify amino acids without affecting others, which is crucial in developing new pharmaceuticals.
  • Drug Development: Its unique structure enhances the solubility and stability of drug candidates, making it valuable in the pharmaceutical industry for creating more effective medications.
  • Bioconjugation: The compound is used to facilitate the attachment of biomolecules, such as antibodies to drugs, improving targeted delivery systems in cancer therapies.
  • Research in Organic Chemistry: It acts as a versatile intermediate in organic synthesis, enabling chemists to explore new reaction pathways and develop innovative chemical products.
  • Material Science: The compound can be incorporated into polymers to create materials with specific properties, such as improved thermal stability and mechanical strength, beneficial in various industrial applications.

Citations