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Catalog Number:
44292
CAS Number:
42490-26-6
9,10-Dihydro-9,10-[3,4]thiophenoanthracene
Purity:
≥ 98% (GC)
Documents
$236.95 /200MG
Pack Size Availability Price
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Product Information

9,10-Dihydro-9,10-[3,4]thiophenoanthracene is a unique polycyclic aromatic hydrocarbon that features a thiophene moiety, enhancing its electronic properties and potential applications in various fields. This compound is recognized for its role in organic electronics, particularly in the development of organic semiconductors and photovoltaic devices. Its structural characteristics allow for effective charge transport, making it a valuable candidate for researchers focused on improving the efficiency of organic solar cells and light-emitting diodes (LEDs).

Additionally, 9,10-Dihydro-9,10-[3,4]thiophenoanthracene exhibits interesting photophysical properties, which can be leveraged in the design of advanced materials for optoelectronic applications. Its stability and compatibility with other organic materials further enhance its utility in the synthesis of novel compounds for drug delivery systems and sensors. Researchers and industry professionals will find this compound particularly beneficial for its potential to contribute to the development of innovative technologies in energy conversion and storage.

CAS Number
42490-26-6
Purity
≥ 98% (GC)
Molecular Formula
C18H12S
Molecular Weight
260.35
MDL Number
MFCD28386100
PubChem ID
71206148
Melting Point
268 °C
Appearance
White to off-white powder
Conditions
Store at RT
General Information
CAS Number
42490-26-6
Purity
≥ 98% (GC)
Molecular Formula
C18H12S
Molecular Weight
260.35
MDL Number
MFCD28386100
PubChem ID
71206148
Melting Point
268 °C
Appearance
White to off-white powder
Conditions
Store at RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

9,10-Dihydro-9,10-[3,4]thiophenoanthracene is widely utilized in research focused on:

  • Organic Electronics: This compound is used in the development of organic semiconductors, which are essential for creating flexible and lightweight electronic devices, such as OLEDs (Organic Light Emitting Diodes).
  • Photovoltaic Cells: It plays a role in the formulation of organic solar cells, enhancing their efficiency and stability, making renewable energy solutions more accessible and effective.
  • Material Science: Researchers leverage its unique properties to design advanced materials with tailored electrical and optical characteristics, beneficial for various applications in nanotechnology.
  • Pharmaceutical Development: The compound is explored for its potential use in drug formulations, particularly in targeting specific biological pathways, which can lead to more effective therapies.
  • Sensor Technology: Its conductive properties make it suitable for developing sensors that can detect environmental changes, contributing to advancements in smart technology and environmental monitoring.

Citations