The continuous pursuit of novel materials with enhanced properties drives innovation across numerous industries. 3,6-Dibromo-phenanthrenequinone, identified by CAS number 53348-05-3, stands out as a versatile building block for specialty organic materials. NINGBO INNO PHARMCHEM CO.,LTD., a prominent chemical manufacturer in China, is a key supplier of this compound.

The chemical structure of 3,6-Dibromo-phenanthrenequinone, featuring a phenanthrenequinone core functionalized with two bromine atoms, grants it unique reactivity and electronic characteristics. These properties are fundamental to its utility in creating specialty organic materials. When considering the 'buy 3,6-Dibromo-phenanthrenequinone' from a reputable source, understanding these inherent advantages is crucial for successful application development. Its typical appearance as a light yellow to brown powder to crystal, along with a melting point of approximately 289-293°C, ensures predictable behavior in synthesis.

This compound's versatility is particularly evident in its application as a precursor for organic electronic devices. It can be transformed into materials that form the active layers of OLEDs, OFETs, and other semiconductor devices, contributing to improved performance and efficiency. Furthermore, its role in the development of 'phenanthrenequinone derivatives for solar cells' highlights its importance in the renewable energy sector, enabling the creation of more efficient photovoltaic materials. The compound is also integral to the broader field of optoelectronic materials, finding use in advanced sensors and display technologies.

For businesses and research institutions requiring specialized chemical intermediates, partnering with a reliable 'supplier in China' like NINGBO INNO PHARMCHEM CO.,LTD. offers significant benefits. Access to high-quality 3,6-Dibromo-phenanthrenequinone ensures that the specialty organic materials developed meet stringent performance requirements. By providing essential building blocks, we empower our clients to push the boundaries of material science and technological innovation.