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Catalog Number:
47359
CAS Number:
36530-06-0
Boron subphthalocyanine chloride
Purity:
≥ 98%
Documents
$90.00 /250MG
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Product Information

Boron subphthalocyanine chloride is a versatile compound known for its unique optical properties and strong light-absorbing capabilities. This chlorinated derivative of boron subphthalocyanine is particularly valued in the fields of photodynamic therapy (PDT) and organic photovoltaics. Its ability to generate reactive oxygen species upon light activation makes it an excellent candidate for targeted cancer treatments, where it can selectively destroy malignant cells while minimizing damage to surrounding healthy tissue. Additionally, its stability and solubility in various solvents enhance its applicability in dye-sensitized solar cells, contributing to advancements in renewable energy technologies.

Researchers and industry professionals appreciate boron subphthalocyanine chloride for its potential in developing innovative materials for optoelectronic devices and sensors. Its unique properties facilitate the creation of high-performance organic light-emitting diodes (OLEDs) and photodetectors, making it a valuable asset in the electronics sector. With ongoing research into its applications, this compound holds promise for future breakthroughs in both medical and technological fields.

CAS Number
36530-06-0
Purity
≥ 98%
Molecular Formula
C24H12BClN6
Molecular Weight
430.66
MDL Number
MFCD00209549
PubChem ID
11826144
Appearance
Brown solid
Conditions
Store at RT
General Information
CAS Number
36530-06-0
Purity
≥ 98%
Molecular Formula
C24H12BClN6
Molecular Weight
430.66
MDL Number
MFCD00209549
PubChem ID
11826144
Appearance
Brown solid
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

Boron subphthalocyanine chloride is widely utilized in research focused on:

  • Photodynamic Therapy (PDT): This compound is effective in treating certain cancers by producing reactive oxygen species when exposed to light, helping to destroy cancer cells while minimizing damage to surrounding healthy tissue.
  • Solar Energy Conversion: It serves as a promising material in organic photovoltaics, enhancing the efficiency of solar cells by improving light absorption and charge transport.
  • Fluorescent Probes: Used in biological imaging, it acts as a fluorescent marker, allowing researchers to visualize cellular processes and structures in real time.
  • Electronics: Its unique electronic properties make it suitable for applications in organic light-emitting diodes (OLEDs), contributing to the development of more efficient and vibrant display technologies.
  • Nanotechnology: The compound is explored for use in drug delivery systems, where its ability to form stable complexes can enhance the targeted delivery of therapeutic agents to specific cells or tissues.

Citations