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Catalog Number:
44984
CAS Number:
362513-28-8
3-Bromo-2,4-dimethyl-5-phenylthiophene
Purity:
≥ 98% (GC)
Documents
$134.00 /1G
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Product Information

3-Bromo-2,4-dimethyl-5-phenylthiophene is a versatile compound that finds significant applications in organic synthesis and materials science. This thiophene derivative is recognized for its unique electronic properties, making it an excellent candidate for use in organic semiconductors and photovoltaic devices. Researchers appreciate its ability to enhance charge transport and improve the efficiency of organic light-emitting diodes (OLEDs) and solar cells. Additionally, its bromine substituent allows for further functionalization, enabling the development of novel materials with tailored properties for specific applications.

In the pharmaceutical industry, 3-Bromo-2,4-dimethyl-5-phenylthiophene serves as an important building block in the synthesis of bioactive compounds, potentially leading to the discovery of new therapeutic agents. Its stability and reactivity make it a valuable resource for chemists looking to explore new pathways in drug development. With its broad range of applications, this compound stands out as a key player in advancing both research and industrial processes.

CAS Number
362513-28-8
Purity
≥ 98% (GC)
Molecular Formula
C12H11BrS
Molecular Weight
267.18
MDL Number
MFCD08276302
PubChem ID
44629772
Melting Point
32 °C
Appearance
White to orange to green powder to lump
Conditions
Store at 2 - 8 °C
General Information
CAS Number
362513-28-8
Purity
≥ 98% (GC)
Molecular Formula
C12H11BrS
Molecular Weight
267.18
MDL Number
MFCD08276302
PubChem ID
44629772
Melting Point
32 °C
Appearance
White to orange to green powder to lump
Conditions
Store at 2 - 8 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

3-Bromo-2,4-dimethyl-5-phenylthiophene is widely utilized in research focused on:

  • Organic Electronics: This compound serves as a key building block in the synthesis of organic semiconductors, which are essential for developing flexible and lightweight electronic devices.
  • Pharmaceutical Development: It is used in the design of novel pharmaceutical agents, particularly those targeting specific biological pathways, enhancing drug efficacy and specificity.
  • Material Science: The compound plays a role in creating advanced materials with unique properties, such as improved conductivity and stability, beneficial for various industrial applications.
  • Photovoltaics: It contributes to the development of organic solar cells, offering a more sustainable and cost-effective alternative to traditional silicon-based solar technology.
  • Research in Organic Synthesis: This chemical is valuable in academic and industrial research for developing new synthetic methodologies, allowing chemists to explore innovative reactions and compounds.

Citations