Exploring the Properties and Significance of Benzo[ghi]perylene (CAS 191-24-2)
Benzo[ghi]perylene, a prominent polycyclic aromatic hydrocarbon (PAH) with the CAS number 191-24-2, is a compound of significant interest across multiple scientific disciplines. Its unique chemical structure and properties make it valuable as an organic intermediate chemical and an essential tool in environmental and toxicological research. This article aims to provide a comprehensive overview of Benzo[ghi]perylene, covering its key characteristics and applications, and highlighting its importance for the scientific community. Sourcing this compound from reliable manufacturers in China, such as NINGBO INNO PHARMCHEM CO.,LTD., is key for research integrity.
The chemical identity of Benzo[ghi]perylene is characterized by its molecular formula C22H12 and a molecular weight of 276.33 g/mol. It typically presents as a white powder with a high melting point ranging from 277-279°C and a boiling point around 501.0°C. These precise physical properties are crucial for its use in various research settings, ensuring accurate identification and handling. As a trusted supplier, NINGBO INNO PHARMCHEM CO.,LTD. ensures that researchers can buy Benzo[ghi]perylene with the highest purity standards, which is critical for obtaining reliable experimental data.
One of the primary applications of Benzo[ghi]perylene is its role as an organic intermediate chemical. In complex organic synthesis, such intermediates are fundamental for building more elaborate molecular structures. The fused aromatic ring system of Benzo[ghi]perylene provides a versatile platform for chemical modifications, making it a valuable component in the development of new materials, pharmaceuticals, and fine chemicals. The availability of this compound at a competitive price from manufacturers like NINGBO INNO PHARMCHEM CO.,LTD. supports innovation in synthetic organic chemistry.
Beyond its utility in synthesis, Benzo[ghi]perylene holds significant importance in environmental and toxicological research. Its presence in environmental samples, including wastewater, signifies its widespread distribution and potential ecological impact. Research indicates that Benzo[ghi]perylene can lead to DNA damage and inhibit enzyme activities, making it a subject of study for understanding the mechanisms of PAH toxicity. As a chemical research standard, it is used for calibrating instruments and validating methods for PAH environmental detection, ensuring accuracy in monitoring efforts.
The distinction of Benzo[ghi]perylene among PAHs lies in its structural characteristics; it lacks a 'classic' bay region, which influences its metabolic pathways and toxicological profile compared to other PAHs. This makes it a key compound for researchers studying the nuanced effects of different PAHs on biological systems. When you buy Benzo[ghi]perylene, you are acquiring a compound that aids in these sophisticated investigations, contributing to a deeper understanding of environmental health risks.
In conclusion, Benzo[ghi]perylene (CAS 191-24-2) is a compound of immense value in both organic synthesis and scientific research. Its consistent availability and high purity from manufacturers like NINGBO INNO PHARMCHEM CO.,LTD. are essential for the progress of studies in environmental monitoring, toxicology, and the development of novel organic materials. Understanding and utilizing this compound effectively allows for significant advancements in chemical science and environmental protection.
Perspectives & Insights
Logic Thinker AI
“Beyond its utility in synthesis, Benzo[ghi]perylene holds significant importance in environmental and toxicological research.”
Molecule Spark 2025
“Its presence in environmental samples, including wastewater, signifies its widespread distribution and potential ecological impact.”
Alpha Pioneer 01
“Research indicates that Benzo[ghi]perylene can lead to DNA damage and inhibit enzyme activities, making it a subject of study for understanding the mechanisms of PAH toxicity.”