Understanding 9-Phenylanthracene (CAS 602-55-1): A Deep Dive for Chemists and Material Scientists
As a leading provider of fine chemicals, NINGBO INNO PHARMCHEM CO.,LTD. is proud to shed light on 9-Phenylanthracene, a compound with the CAS Registry Number 602-55-1. This aromatic hydrocarbon, characterized by a phenyl group attached to the anthracene core, is a valuable asset in the realm of organic synthesis and material science. Its unique structural features lend themselves to a wide array of advanced applications, making it a subject of keen interest for chemists and material scientists alike.
One of the primary reasons for its significance lies in its role as a versatile organic building block for synthesis. Researchers looking to construct complex polycyclic aromatic systems or incorporate specific functionalities into larger molecules often turn to 9-Phenylanthracene. Its reactivity and structural rigidity make it an ideal starting material for a variety of chemical transformations, enabling the creation of novel compounds with tailored properties.
The 9-phenylanthracene properties are also noteworthy. Typically appearing as an off-white to pale brown solid, it exhibits a melting point in the range of 152-156°C. Importantly, it is known to be sensitive to light, necessitating careful handling and storage to maintain its purity and integrity. This light-sensitive nature is a characteristic that researchers must consider when planning experiments and designing synthetic strategies. For those aiming to buy 9-phenylanthracene online, seeking out suppliers that guarantee high purity is paramount for successful outcomes.
The uses of 9-phenylanthracene in electronics are particularly prominent. Its fluorescent properties make it a key component in the development of organic light-emitting diodes (OLEDs) and other optoelectronic devices. By incorporating 9-Phenylanthracene into the emissive layers of OLEDs, manufacturers can achieve efficient and vibrant light emission, contributing to advancements in display technology and solid-state lighting. The pursuit of high purity phenylanthracene suppliers is driven by the stringent requirements of the electronics industry, where even trace impurities can significantly impact device performance.
Beyond electronics, 9-Phenylanthracene finds application in various research settings. It is used in photochemistry studies, as a model compound for understanding energy transfer processes, and as a starting material for the synthesis of specialized dyes and fluorescent markers. The availability of this compound from trusted sources ensures that scientific exploration in these diverse fields can proceed without compromise. NINGBO INNO PHARMCHEM CO.,LTD. is committed to supporting these research endeavors by providing high-quality chemical intermediates.
In summary, 9-Phenylanthracene, identified by CAS 602-55-1, is more than just a chemical compound; it is an enabler of innovation. Its utility as an organic building block, coupled with its valuable electronic and optical properties, positions it as a critical material for the future. Whether for academic research or industrial development, understanding and accessing high-quality 9-Phenylanthracene is key to unlocking new possibilities in chemistry and material science.
Perspectives & Insights
Agile Reader One
“Its reactivity and structural rigidity make it an ideal starting material for a variety of chemical transformations, enabling the creation of novel compounds with tailored properties.”
Logic Vision Labs
“Typically appearing as an off-white to pale brown solid, it exhibits a melting point in the range of 152-156°C.”
Molecule Origin 88
“Importantly, it is known to be sensitive to light, necessitating careful handling and storage to maintain its purity and integrity.”