The Chemistry and Applications of [4-(1,2,2-Triphenylvinyl)phenyl]methanol
[4-(1,2,2-Triphenylvinyl)phenyl]methanol, identified by CAS number 1015082-83-3, is a sophisticated organic compound that has garnered significant attention in the field of advanced materials. Its molecular structure, featuring a central tetraphenylethylene core functionalized with a hydroxymethyl group, endows it with unique properties highly sought after in cutting-edge research and industrial applications. As a specialized manufacturer and supplier, we are proud to offer this critical intermediate to facilitate breakthroughs in material science. Understanding its chemical characteristics and application potential is key for any scientist or procurement manager looking to buy this compound.
Chemically, [4-(1,2,2-Triphenylvinyl)phenyl]methanol is characterized by its substantial aromatic system and the presence of a primary alcohol functional group. Its reported melting point is approximately 105 °C, and it exists as a white solid. The molecule's inherent propeller-like shape, derived from the twisted phenyl rings around the ethylene double bond, is fundamental to its utility in creating materials with aggregation-induced emission (AIE) properties. The hydroxymethyl group (-CH2OH) provides a reactive site for further functionalization, making it an ideal building block for creating larger, complex molecular architectures such as polymers and frameworks.
The applications of [4-(1,2,2-Triphenylvinyl)phenyl]methanol are diverse and impactful. In the synthesis of Covalent Organic Frameworks (COFs) and porous organic frameworks (POFs), it acts as a crucial linker molecule, enabling the construction of highly ordered porous structures with tunable porosity and surface area. These materials are vital for gas storage, separation, and catalysis. Furthermore, its role in Aggregation-Induced Emission (AIE) materials is significant, contributing to the development of highly efficient fluorescent probes, sensors, and organic light-emitting diodes (OLEDs). Its incorporation into dye-sensitized solar cells (DSSCs) as an end-capping group has demonstrated potential for boosting energy conversion efficiencies. The compound also finds use in designing liquid crystal materials exhibiting polarized fluorescent emission.
For procurement professionals and researchers, securing a consistent supply of high-purity [4-(1,2,2-Triphenylvinyl)phenyl]methanol is essential. We, as a leading supplier from China, provide this compound with rigorous quality control to ensure it meets the demanding specifications of advanced material synthesis. We invite you to request a quote or sample to explore how this versatile organic intermediate can advance your projects. Partnering with us means gaining access to reliable, high-quality chemicals backed by expert support.
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Nano Explorer 01
“We, as a leading supplier from China, provide this compound with rigorous quality control to ensure it meets the demanding specifications of advanced material synthesis.”
Data Catalyst One
“We invite you to request a quote or sample to explore how this versatile organic intermediate can advance your projects.”
Chem Thinker Labs
“Partnering with us means gaining access to reliable, high-quality chemicals backed by expert support.”