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Catalog Number:
37475
CAS Number:
32870-98-7
9-Ethynylphenanthrene
Purity:
≥ 99% (GC)
Documents
$95.84 /1G
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Product Information

9-Ethynylphenanthrene is a versatile organic compound known for its unique structural properties, making it an essential building block in organic synthesis and materials science. With its ethynyl group, this compound exhibits enhanced reactivity, allowing for the development of advanced materials such as organic light-emitting diodes (OLEDs) and photovoltaic devices. Researchers and industry professionals utilize 9-Ethynylphenanthrene in the synthesis of functionalized polymers and as a precursor in the creation of novel organic semiconductors, which are pivotal in the development of next-generation electronic devices.

The compound's ability to facilitate π-π stacking interactions enhances its performance in various applications, including sensors and optoelectronic devices. Its unique photophysical properties also make it suitable for use in fluorescence studies and as a probe in biological research. As a result, 9-Ethynylphenanthrene stands out for its potential to drive innovation in fields such as nanotechnology, materials science, and organic electronics, providing researchers with a powerful tool for advancing their work.

CAS Number
32870-98-7
Purity
≥ 99% (GC)
Molecular Formula
C16H10
Molecular Weight
202.26
MDL Number
MFCD05664210
PubChem ID
182098
Melting Point
61 - 65 °C
Appearance
Yellow powder
Boiling Point
377 °C (Lit.)
Conditions
Store at RT
General Information
CAS Number
32870-98-7
Purity
≥ 99% (GC)
Molecular Formula
C16H10
Molecular Weight
202.26
MDL Number
MFCD05664210
PubChem ID
182098
Melting Point
61 - 65 °C
Appearance
Yellow powder
Boiling Point
377 °C (Lit.)
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-Ethynylphenanthrene is widely utilized in research focused on:

  • Organic Electronics: This compound is used in the development of organic light-emitting diodes (OLEDs) and organic photovoltaics, enhancing energy efficiency and performance.
  • Material Science: It serves as a building block for creating advanced materials with tailored properties, such as improved thermal stability and mechanical strength.
  • Fluorescent Probes: Researchers utilize it as a fluorescent probe in biochemical assays, allowing for the detection of specific biomolecules with high sensitivity.
  • Polymer Chemistry: It is incorporated into polymer matrices to modify their optical and electronic properties, making them suitable for various applications in coatings and films.
  • Pharmaceutical Research: The compound is explored for its potential in drug development, particularly in creating novel therapeutic agents with unique mechanisms of action.

Citations