9-(Bromomethyl)acridine: A Versatile Fluorescent Labeling Reagent for HPLC and Beyond
Discover the essential role of 9-(Bromomethyl)acridine in advanced analytical chemistry, drug discovery, and material science. Explore its capabilities as a powerful fluorescent labeling agent.
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9-(Bromomethyl)acridine
As a trusted supplier in China, we offer 9-(Bromomethyl)acridine, a crucial compound for enhancing analytical sensitivity. Its application as an HPLC derivatizing agent allows for the fluorescent labeling of carboxylic acids, significantly improving the detection limits for substances like fatty acids. We are a leading manufacturer in China dedicated to providing high-purity chemicals for research and industrial applications.
- Leverage 9-(Bromomethyl)acridine applications for precise fatty acid analysis by HPLC, ensuring accurate quantification in various matrices.
- Utilize this compound as a potent fluorescent probe for biological studies, aiding in the investigation of complex biological pathways.
- Incorporate 9-(Bromomethyl)acridine in your organic synthesis to build intricate molecular structures for drug discovery and development.
- Benefit from its role in fluorescent labeling of carboxylic acids, a cornerstone for sensitive analytical methodologies.
Key Advantages
Enhanced Detection Sensitivity
Utilize the power of fluorescent labeling of carboxylic acids with 9-(Bromomethyl)acridine to achieve superior sensitivity in your HPLC analyses.
Versatile Organic Synthesis Intermediate
Employ this compound in organic synthesis to create novel molecules with potential applications in pharmaceuticals and material science.
Streamlined Biological Research
The fluorescent properties of 9-(Bromomethyl)acridine make it invaluable for in-vitro biological studies and mechanism investigations.
Key Applications
HPLC Labeling
As an HPLC derivatizing agent, it's critical for the sensitive detection and quantification of carboxylic acids, essential for fatty acid analysis by HPLC.
Organic Synthesis
Serves as a vital building block in complex organic synthesis, enabling the creation of novel acridine derivatives for various scientific pursuits.
Fluorescent Probes
Its fluorescent nature makes it an excellent probe in biological studies, aiding in understanding cellular processes and drug interactions.
Drug Discovery
Used in the development of new pharmaceuticals, exploring acridine derivatives for their therapeutic potential, guided by 9-(bromomethyl)acridine applications.