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Catalog Number:
23921
CAS Number:
192190-12-8
N-(2-iodophényl)acrylamide
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$236.05 /100 mg
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Product Information

N-(2-Iodophenyl)Acrylamide is a versatile compound that finds significant applications in the fields of organic synthesis and medicinal chemistry. This compound, characterized by its unique structure, serves as an important building block in the development of various pharmaceuticals and agrochemicals. Its iodine substituent enhances its reactivity, making it a valuable intermediate in the synthesis of more complex molecules. Researchers utilize N-(2-Iodophenyl)Acrylamide in the design of targeted therapies, particularly in cancer research, where its derivatives may exhibit potent anti-tumor activity. Additionally, its application in polymer chemistry allows for the creation of innovative materials with tailored properties, suitable for advanced applications in coatings and adhesives.

The compound's ability to participate in various chemical reactions, such as cross-coupling and polymerization, positions it as a crucial component in the development of new materials and therapeutic agents. Its stability and reactivity provide researchers with the flexibility needed to explore diverse synthetic pathways, making N-(2-Iodophenyl)Acrylamide a key player in both academic and industrial research settings.

CAS Number
192190-12-8
Molecular Formula
C 9 H 8 INO
Molecular Weight
273.07
MDL Number
MFCD09910426
PubChem ID
21583407
Conditions
Conserver à 0-8°C
General Information
CAS Number
192190-12-8
Molecular Formula
C 9 H 8 INO
Molecular Weight
273.07
MDL Number
MFCD09910426
PubChem ID
21583407
Conditions
Conserver à 0-8°C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

N-(2-Iodophenyl)Acrylamide is widely utilized in research focused on:

  • Pharmaceutical Development: This compound serves as a key intermediate in synthesizing various pharmaceuticals, particularly in developing targeted cancer therapies due to its ability to interact with specific biological targets.
  • Polymer Chemistry: It is employed in creating functional polymers that can be used in drug delivery systems, enhancing the efficiency of therapeutic agents by controlling their release rates.
  • Bioconjugation: Researchers use it to modify biomolecules for bioconjugation processes, which are essential in creating more effective diagnostic tools and therapeutic agents.
  • Fluorescent Probes: The compound is utilized in developing fluorescent probes for imaging applications, allowing scientists to visualize cellular processes in real-time.
  • Material Science: It plays a role in producing advanced materials with unique properties, such as increased thermal stability and improved mechanical strength, which are beneficial in various industrial applications.

Citations