Hexa(4-formylphenyl)benzene: A Cornerstone for Advanced Organic Synthesis and Materials Design
In the realm of advanced organic synthesis and materials design, the identification and utilization of versatile molecular building blocks are paramount. Hexa(4-formylphenyl)benzene has emerged as a molecule of significant importance, serving as a crucial intermediate and a cornerstone for the construction of complex Covalent Organic Frameworks (COFs). Its unique structural features and reactivity profile make it indispensable for creating materials with tailored properties for a wide range of applications.
Hexa(4-formylphenyl)benzene, identified by its CAS number 1862220-96-9, is a C6 rotationally symmetric molecule. It is comprised of a central hexaphenylbenzene core, to which six phenyl rings are attached. Each of these peripheral phenyl rings bears an aldehyde group at the para position. This precise arrangement of functional groups is key to its utility as an aldehyde COF linker and a versatile organic chemistry building block. The aldehyde moieties are highly reactive, readily participating in condensation reactions that form the robust covalent bonds necessary for COF assembly.
The primary application of Hexa(4-formylphenyl)benzene lies in its role as a key linker for synthesizing COFs. Its C6 symmetry facilitates the creation of highly ordered frameworks with predictable pore structures and high crystallinity. When combined with appropriate co-monomers, it enables the formation of 2D and 3D COFs with significant surface areas, making them ideal for applications such as gas storage and separation. For example, COFs synthesized from Hexa(4-formylphenyl)benzene have shown excellent performance in adsorbing CO2 and methane, contributing to the development of high surface area COF materials.
Beyond gas-related applications, the use of Hexa(4-formylphenyl)benzene as an organic building blocks for materials science extends to catalysis and drug delivery. The porous nature of the resulting COFs allows them to act as supports for catalytic species, enhancing catalytic activity and selectivity. In drug delivery, the controlled porosity enables the loading and controlled release of pharmaceutical compounds. The consistent synthesis and high purity of this molecule are crucial for achieving these sophisticated material properties, emphasizing its importance as a high-quality COF ligand.
NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to supplying the scientific community with the essential building blocks for innovation. Our Hexa(4-formylphenyl)benzene is produced to the highest standards, ensuring its reliability and performance in advanced organic synthesis and materials design. We empower researchers to push the boundaries of chemical innovation by providing them with access to critical intermediates like Hexa(4-formylphenyl)benzene, thereby contributing to advancements in areas such as COF technology and beyond.
Perspectives & Insights
Data Seeker X
“The porous nature of the resulting COFs allows them to act as supports for catalytic species, enhancing catalytic activity and selectivity.”
Chem Reader AI
“In drug delivery, the controlled porosity enables the loading and controlled release of pharmaceutical compounds.”
Agile Vision 2025
“The consistent synthesis and high purity of this molecule are crucial for achieving these sophisticated material properties, emphasizing its importance as a high-quality COF ligand.”