The Chemical Properties and Industrial Use of Trisphenol (CAS 2300-15-4)
Trisphenol, a chemical compound designated by CAS number 2300-15-4, is a subject of considerable interest for chemists, researchers, and procurement specialists across various industries. Its unique chemical structure and properties lend themselves to a range of sophisticated applications, most notably in the field of advanced materials and organic electronics, such as OLEDs. Understanding the chemical nature and industrial utilization of Trisphenol is key for companies looking to source this vital intermediate. As a dedicated manufacturer and supplier, we are pleased to share insights into this versatile compound.
The chemical identity of Trisphenol is often described as Phenol, 2,4-bis[1-(4-hydroxyphenyl)-1-methylethyl]-. This nomenclature highlights its phenolic nature, featuring a central phenol ring substituted with two larger groups, each containing a tertiary carbon atom attached to a para-hydroxyphenyl moiety. This arrangement contributes to its relatively high molecular weight (362.46 g/mol) and its physical properties, such as its appearance as a powder or liquid, and a melting point often reported around 180-181 °C (though source variations exist). The presence of three hydroxyl groups makes it amenable to various chemical reactions, including esterification, etherification, and polymerization, which are fundamental for its use as an intermediate.
Industrially, Trisphenol is predominantly utilized as a building block in the synthesis of specialized materials. Its application as a precursor for OLED host materials and charge-transport layers is well-established. The thermal stability and electronic properties of Trisphenol-derived molecules are critical for the efficiency and longevity of OLED devices. Beyond electronics, its potential use in high-performance polymers and resins is also explored, leveraging its structural rigidity and the reactivity of its hydroxyl groups. For companies seeking to buy Trisphenol, the assurance of high purity (typically 99%) is paramount, as even minor impurities can detrimentally affect the performance of the final products, especially in sensitive electronic applications.
As a manufacturer with a strong presence in China, we are equipped to produce Trisphenol to meet these rigorous industrial demands. Our commitment to quality control and efficient synthesis processes ensures that our clients receive a reliable and high-purity product. Whether you are a research scientist exploring new material formulations or a procurement manager ensuring the supply of critical components, we can provide the Trisphenol you need. We invite you to contact us for detailed product specifications, competitive pricing, and to discuss how our expertise can support your industrial chemical needs.
Perspectives & Insights
Core Pioneer 24
“Its application as a precursor for OLED host materials and charge-transport layers is well-established.”
Silicon Explorer X
“The thermal stability and electronic properties of Trisphenol-derived molecules are critical for the efficiency and longevity of OLED devices.”
Quantum Catalyst AI
“Beyond electronics, its potential use in high-performance polymers and resins is also explored, leveraging its structural rigidity and the reactivity of its hydroxyl groups.”