The Role of Benzo[ghi]perylene (CAS 191-24-2) in Chemical Synthesis and Research
Benzo[ghi]perylene, identified by its CAS number 191-24-2, is a fascinating polycyclic aromatic hydrocarbon (PAH) that plays a significant role in various scientific disciplines, particularly in chemical synthesis and research. As a high-purity chemical, it serves as an essential building block and analytical standard. This article delves into the properties of Benzo[ghi]perylene and highlights its crucial applications for researchers and industries seeking to purchase this vital compound.
The chemical identity of Benzo[ghi]perylene is well-defined: it's a PAH with the molecular formula C22H12 and a molecular weight of 276.33 g/mol. Its physical characteristics include a high melting point (277-279°C) and a distinct white powder appearance, making it identifiable in laboratory settings. These attributes are fundamental for its use as a reliable organic intermediate chemical. Manufacturers like NINGBO INNO PHARMCHEM CO.,LTD. provide this compound with the purity necessary for demanding research applications, ensuring consistent results for those who buy Benzo[ghi]perylene.
As an organic intermediate, Benzo[ghi]perylene offers considerable potential in synthetic organic chemistry. Its complex, fused ring system provides a unique structural motif that can be leveraged in the creation of novel organic materials, pharmaceuticals, and other specialty chemicals. The demand for such intermediates is driven by the continuous innovation in material science and drug discovery. Reliable suppliers in China ensure that researchers can access this compound to explore new synthetic pathways and develop groundbreaking products. The price of Benzo[ghi]perylene is often considered in relation to its purity and the scale of synthesis required.
In addition to its synthetic utility, Benzo[ghi]perylene is a subject of interest in environmental and toxicological studies. It is recognized for its potential to cause DNA damage and inhibit enzyme activities, making it a valuable compound for understanding the broader impacts of PAHs in ecosystems. As a chemical research standard, it allows scientists to calibrate analytical instruments and validate methodologies for detecting and quantifying PAHs in environmental samples. This is critical for environmental monitoring and assessing the potential health risks associated with exposure to these pollutants. The availability of this compound from NINGBO INNO PHARMCHEM CO.,LTD. supports these vital research efforts.
Furthermore, the study of Benzo[ghi]perylene contributes to the field of environmental chemistry by offering insights into the behavior and transformation of PAHs in the environment. Its classification as a PAH without a 'classic' bay region distinguishes it from other carcinogenic PAHs, providing a nuanced understanding of their toxicological profiles. Researchers often seek to buy Benzo[ghi]perylene to conduct comparative studies and develop more effective risk assessment strategies. The emphasis on high quality and purity from suppliers like NINGBO INNO PHARMCHEM CO.,LTD. is paramount for the accuracy of these studies.
In summary, Benzo[ghi]perylene (CAS 191-24-2) stands out as a compound of significant importance in both chemical synthesis and research. Its properties as a pure organic intermediate chemical, coupled with its relevance in environmental and toxicological studies, make it an indispensable substance for the scientific community. For those looking to source this compound, NINGBO INNO PHARMCHEM CO.,LTD. offers a reliable supply chain, ensuring that high-quality Benzo[ghi]perylene is accessible for diverse research and development endeavors.
Perspectives & Insights
Agile Reader One
“The price of Benzo[ghi]perylene is often considered in relation to its purity and the scale of synthesis required.”
Logic Vision Labs
“In addition to its synthetic utility, Benzo[ghi]perylene is a subject of interest in environmental and toxicological studies.”
Molecule Origin 88
“It is recognized for its potential to cause DNA damage and inhibit enzyme activities, making it a valuable compound for understanding the broader impacts of PAHs in ecosystems.”