Introduction of CAS:17135-78-3 | 2-Chloroanthracene
2-Chloroanthracene (2-CA) is a chemical compound belonging to the family of polyaromatic hydrocarbons. It is a white crystalline solid with a melting point of 108°C and a boiling point of 205°C. 2-CA is a low-toxicity compound and has been used in a variety of scientific research applications.
Specification of CAS:17135-78-3 | 2-Chloroanthracene
|
ITEMS |
SPECIFICATION |
|
Color |
Pale Green to Brown |
|
Purity |
98% |
|
Boiling point |
275.35°C (rough estimate) |
|
Density |
1.1779 (rough estimate) |
|
Form |
Solid |
Research Application of CAS:17135-78-3 | 2-Chloroanthracene
Formation of PCDDs and PCDFs : 2-Chloroanthracene has been studied as a model compound for carbon in the formation of polychlorinated dibenzo-p-dioxins (PCDDs) and polychlorinated dibenzofurans (PCDFs) in model fly ash systems. The study found that the formation of PCDDs and PCDFs from anthracene reaches a maximum around 300°C and identified many chlorinated products from this compound, suggesting the recombination of degradation products (Schoonenboom & Olie, 1995).
Chlorination Reactions : Research into the binary phase chlorination of aromatic hydrocarbons with solid copper(II) chloride revealed that anthracene is selectively chlorinated to give a quantitative yield of 9-chloroanthracene. The study provides insights into the reaction mechanism of chlorination, which is significant for understanding the chemical behavior of chlorinated anthracenes like this compound (Tanimoto et al., 1979).
Copolymerization with Butadiene : this compound has been copolymerized with butadiene in various conditions, showing different incorporation rates. This research provides insights into the use of chloroanthracenes in polymer chain modifications and the effects of different isomers on polymerization (Marvel & Johnson, 1956).
Oxygen Quenching in Solid State : Studies on crystalline this compound have observed a gradual increase in delayed fluorescence intensity under constant light irradiation. This behavior is consistent with a triplet exciton-oxygen interaction, offering insights into the photophysical properties of chloroanthracenes (Johnson et al., 1971).
Atmospheric Reaction Kinetics : The gas-phase atmospheric reaction of 9-chloroanthracene with NO3 radical in the presence of NOx has been investigated to understand the chemical transformations, degradation products, and transport capacity of chloroanthracenes in the atmosphere. This research is vital for assessing the environmental impact and behavior of such compounds (Dang et al., 2015).



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