Catalog No.
Product Name
Application
Product Information
Citations
-
Metal-organic Framework
2'-Methyl-[1,1':3',1''-terphenyl]-4,4'',5'-tricarboxylic acid functions as a building block for the synthesis of metal-organic frameworks (MOFs). This compound plays a crucial role in enhancing the structural integrity and functional properties of MOFs. Its applications extend to gas storage, separation processes, and catalysis research, making it valuable for studies in material science and chemistry. -
Metal-organic Framework
2-Sulfoterephthalic acid acts as a building block for metal-organic frameworks (MOFs). Its sulfonic acid groups enhance water stability and improve the functional properties of the resulting MOFs. This compound is primarily utilized in research applications focused on gas storage, separation processes, and catalysis within porous materials. -
Metal-organic Framework
2-Mercaptoterephthalic acid is a key building block for metal-organic frameworks (MOFs) designed to enhance gas adsorption and separation processes. Its bifunctional thiol and carboxylic acid groups facilitate coordination with metal ions, enabling the synthesis of versatile porous structures. This compound is widely used in research applications related to catalysis, environmental remediation, and energy storage. -
Metal-organic Framework
2,2′-(3,5-Pyridinediyl)bis[1,4-benzenedicarboxylic acid] serves as a crucial ligand in the formation of metal-organic frameworks (MOFs). Its unique structure provides optimal coordination sites for metal ions, facilitating the synthesis of highly porous materials. This compound is widely utilized in gas storage, separation processes, and catalysis research applications, supporting advancements in materials science and chemical engineering. -
Biochemical Reagent
6-O-Methyl-guanine is a biochemical reagent primarily employed in nucleoside and nucleic acid research. This compound serves as a useful substrate for various biological studies, particularly in the investigation of methylation processes and their implications in gene expression and regulation. Its role in understanding the biochemical pathways involved in methylation can be pivotal for research in epigenetics and cancer biology.

