The Role of Pyridine-Functionalized Perylene Tetracarboxylic Acid Diamide in MOF Design
NINGBO INNO PHARMCHEM CO.,LTD. is proud to highlight advancements in materials science, particularly focusing on novel building blocks for Metal-Organic Frameworks (MOFs). One such crucial compound is N,N'-Di(pyrid-4-yl)-perylentetracarbonic Acid, Diamide, identified by CAS No. 136847-29-5. This advanced organic intermediate is playing a significant role in the innovative design and synthesis of next-generation porous materials.
Metal-Organic Frameworks (MOFs) are crystalline materials composed of metal ions or clusters coordinated to organic ligands. Their highly porous nature and tunable structures make them exceptionally versatile for a wide range of applications, including gas storage, separation, catalysis, and sensing. The precise selection of organic ligands is paramount to dictating the MOF's overall structure, porosity, and functionality. In this context, compounds like N,N'-Di(pyrid-4-yl)-perylentetracarbonic Acid, Diamide offer unique advantages.
The presence of pyridine groups within the N,N'-Di(pyrid-4-yl)-perylentetracarbonic Acid, Diamide structure is particularly noteworthy. Pyridine, a nitrogen-containing heterocycle, can act as a Lewis base and readily coordinate with metal centers. This coordination ability is essential for MOF assembly. When used as a ligand, the pyridine moieties can influence the coordination geometry around the metal nodes, potentially leading to MOFs with enhanced stability, specific guest molecule adsorption properties, or improved catalytic activity. Researchers investigating pyridine-functionalized MOFs have noted their potential in areas such as CO2 capture and selective gas adsorption.
Furthermore, the perylentetracarboxylic acid diamide backbone provides a rigid, planar structure that contributes to the overall robustness and dimensionality of the MOF. This combination of a stable core with reactive functional groups makes N,N'-Di(pyrid-4-yl)-perylentetracarbonic Acid, Diamide an indispensable component for many advanced MOF synthesis protocols. The N,N'-Di(pyrid-4-yl)-perylentetracarbonic Acid Diamide MOF synthesis process benefits from the compound's reliable purity and predictable reactivity.
For scientists and chemical manufacturers engaged in the development of advanced materials, sourcing high-quality intermediates is crucial. NINGBO INNO PHARMCHEM CO.,LTD. ensures that compounds like N,N'-Di(pyrid-4-yl)-perylentetracarbonic Acid, Diamide meet stringent quality standards, with a purity of 97% min. The compound's solubility in common solvents such as DMF and DMSO further facilitates its integration into various N,N'-Di(pyrid-4-yl)-perylentetracarbonic Acid Diamide solubility DMF DMSO compatible reaction systems. By providing these essential organic chemistry MOF building blocks, we empower innovation in materials science.
As the demand for sophisticated porous materials continues to grow, the importance of specialized ligands like N,N'-Di(pyrid-4-yl)-perylentetracarbonic Acid, Diamide cannot be overstated. Its unique chemical structure, combined with its availability from reliable suppliers, positions it as a key player in the ongoing evolution of Metal-Organic Frameworks and other advanced chemical applications.
Perspectives & Insights
Alpha Spark Labs
“Pyridine, a nitrogen-containing heterocycle, can act as a Lewis base and readily coordinate with metal centers.”
Future Pioneer 88
“When used as a ligand, the pyridine moieties can influence the coordination geometry around the metal nodes, potentially leading to MOFs with enhanced stability, specific guest molecule adsorption properties, or improved catalytic activity.”
Core Explorer Pro
“Researchers investigating pyridine-functionalized MOFs have noted their potential in areas such as CO2 capture and selective gas adsorption.”