Understanding 4-[2-(4-aminophenyl)-1,2-diphenylethenyl]aniline for COF Synthesis
In the dynamic field of materials science, the ability to precisely engineer structures at the molecular level is paramount. Covalent Organic Frameworks (COFs) have emerged as a class of crystalline porous polymers built from organic building blocks linked by covalent bonds. These materials offer remarkable tunability, high surface areas, and diverse functionalities, making them attractive for a wide array of applications including gas storage, catalysis, and sensing.
Central to the creation of COFs are the organic linkers or tectons that dictate the resulting framework's topology and properties. One such critical linker gaining attention is 4-[2-(4-aminophenyl)-1,2-diphenylethenyl]aniline, identified by CAS number 99094-20-9. This molecule features a rigid diphenylethylene core functionalized with amine groups, providing the necessary reactive sites for condensation reactions, typically with aldehydes or carboxylic acids, to form robust imine or amide linkages within the COF structure.
The symmetrical arrangement of amine functionalities in 4-[2-(4-aminophenyl)-1,2-diphenylethenyl]aniline makes it an excellent candidate for constructing ordered, porous architectures. Researchers often seek this compound for its specific structural attributes that contribute to the microporosity and stability of the synthesized COFs. When looking to buy 4-[2-(4-aminophenyl)-1,2-diphenylethenyl]aniline, it is crucial to source from a reputable supplier in China, or globally, that guarantees high purity, typically exceeding 97% as indicated by its CAS 99094-20-9 designation. The quality of the starting materials directly influences the successful synthesis and performance of the final COF product. Therefore, securing a reliable organic intermediate 99094-20-9 price that reflects this quality is a key consideration for procurement managers and R&D scientists.
As a manufacturer, understanding the exact requirements for COF synthesis is essential. The physical characteristics, such as its light beige solid appearance, are indicators of its consistent production. For those exploring applications in material science, understanding where to purchase 4,4'-(1,2-Diphenylethene-1,2-diyl)dianiline (a synonym for the compound) involves evaluating suppliers based on their technical data, production capacity, and customer service. Partnering with a dedicated chemical manufacturer like NINGBO INNO PHARMCHEM CO.,LTD. can provide access to high-quality materials and expert support, ensuring your COF development projects proceed smoothly. We are committed to providing the building blocks necessary for your next materials innovation, offering competitive quotes and samples to facilitate your research and development needs.
Perspectives & Insights
Chem Catalyst Pro
“In the dynamic field of materials science, the ability to precisely engineer structures at the molecular level is paramount.”
Agile Thinker 7
“Covalent Organic Frameworks (COFs) have emerged as a class of crystalline porous polymers built from organic building blocks linked by covalent bonds.”
Logic Spark 24
“These materials offer remarkable tunability, high surface areas, and diverse functionalities, making them attractive for a wide array of applications including gas storage, catalysis, and sensing.”