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Name:9-Phenyl-acridin
EINECS:210-020-3
MF: C19H13N
MW: 255.31
MP: 184¡ãC
Appearance: Yellow powder
Purity: 98%
Name:9-Phenyl-acridin
Other name:9-Phenylacridine; 9-Phenyl-acridine; Acridine,9-phenyl;
CAS: 602-56-2
EINECS:210-020-3
MF: C19H13N
MW: 255.31
MP: 184¡ãC
BP:388.54¡ãC (rough estimate)
Density:0.9418 (rough estimate)
Storage:Sealed in dry,Room Temperature
Appearance: Yellow powder
Purity: 98%
Package: 25g, 100g, 500g, bulk package
9-Phenylacridine CAS£º 602-56-2 is an insoluble polymer that is used in modelling studies. It has been shown to have a matrix effect on the hamster V79 cells, which may be due to its ability to reduce the mitochondrial membrane potential. 9-Phenylacridine also has anti-tumour activity against V79 cells and radiation. The apoptotic effect of 9-phenylacridine is mediated by electron reduction, leading to the activation of caspases and DNA fragmentation. Hydrochloric acid can be used to cleave the polymer into smaller monomers for analysis.
9-Phenylacridine CAS£º 602-56-2, also known as 9-PA, is an aromatic heterocyclic compound with a phenyl ring and an acridine ring. It is a naturally occurring compound found in a variety of plants, and has been used for centuries in traditional Chinese medicine. 9-PA is used in a variety of scientific research applications, including as a fluorescent dye, a fluorescent probe, and a fluorescent tag. It has been used to study the structure and function of proteins, and to detect and quantify DNA and RNA. In addition, 9-PA has been used to study the biochemical and physiological effects of various drugs and compounds.
The electrochemical properties of 9-PA CAS£º 602-56-2 derivatives have been studied for their potential use in designing novel catalysts for molecular hydrogen production. This research is crucial for developing new energy materials and technologies.
9-Phenyl-acridin CAS: 602-56-2 also named 9-Phenylacridine; 9-Phenyl-acridine; Acridine,9-phenyl;
9-Phenyl-acridin CAS: 602-56-2 is used to produce other chemicals. For example, it can react with iodomethane to get 10-methyl-9-phenyl-acridinium; iodide. The reaction occurs with reagent Methylation and solvent acetonitrile at temperature of 50 ¡ãC. The reaction time is 3 hours. The yield is 67 %.
Electron spin resonance study of the electron exchange reaction between a radical and a cation,could application to 9-phenyl-acridin CAS: 602-56-2 derivatives.
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