
1,3,5,7,8-Pentamethyl-2,6-dibormo-BODIPY | 134382-52-8
Catalog Number | F01-0056 |
Category | BODIPY |
Molecular Formula | C14H15Br2F2N2 |
Molecular Weight | 409.091 |
Catalog Number | Size | Price | Quantity |
---|---|---|---|
F01-0056 | -- | $-- |
* Please be kindly noted products are not for therapeutic use. We do not sell to patients.
Product Introduction
BODIPY dyes are used to generate fluorescent conjugates of proteins, nucleotides, oligonucleotides and dextrans, as well as to prepare fluorescent enzyme substrates, fatty acids, phospholipids, lipopolysaccharides, receptor ligands and polystyrene microspheres.
- Product Specification
- Application
Excitation | 576 |
Emission | 586 |
Storage | Store at -20°C |
1,3,5,7,8-Pentamethyl-2,6-dibromo-BODIPY, a fluorophore compound, finds significant use in various scientific applications. Here are some key applications of 1,3,5,7,8-Pentamethyl-2,6-dibromo-BODIPY:
Fluorescence Imaging: This compound is widely used in biological fluorescence imaging due to its strong fluorescence emission and photostability. It is particularly useful in cellular and tissue imaging, allowing researchers to visualize and track biological processes in real-time. Its vibrant fluorescence makes it an indispensable tool for studying cellular localization and molecular dynamics.
Sensory Applications: 1,3,5,7,8-Pentamethyl-2,6-dibromo-BODIPY is employed in the development of chemical sensors and biosensors. By binding to specific analytes, it can produce a detectable fluorescence signal that indicates the presence of target molecules. This application is crucial in environmental monitoring, clinical diagnostics, and food safety testing.
Photodynamic Therapy: In the field of medical treatment, this compound can be used in photodynamic therapy (PDT) for cancer. When activated by light, it produces reactive oxygen species that kill cancer cells, providing a targeted treatment approach. Its high efficiency and selectivity in destroying tumorous cells make it a promising candidate for non-invasive cancer therapies.
Material Science: The compound has applications in material science, particularly in creating light-emitting devices and organic electronics. 1,3,5,7,8-Pentamethyl-2,6-dibromo-BODIPY’s ability to emit light efficiently makes it suitable for use in organic light-emitting diodes (OLEDs). Its incorporation into electronic devices can enhance performance, offering novel solutions in the design of optoelectronic components.
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