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Metal-organic Framework
3,3''-Dimethyl-[1,1':4',1''-terphenyl]-4,4''-dicarboxylic acid serves as a pivotal ligand in the formation of metal-organic frameworks (MOFs). It plays a crucial role in coordinating metal ions, thereby influencing the structural properties and functionality of the resulting framework. This compound is utilized in research applications such as gas storage, separation processes, and catalysis, making it significant for advancing the development of porous materials. -
Metal-organic Framework
2,7-Di(pyridin-4-yl)-9H-fluoren-9-one is a key component in the development of metal-organic frameworks (MOFs). This compound features a unique structure that facilitates coordination with metal ions, enabling the formation of stable and porous frameworks. Its biological activity includes potential applications in gas storage, separation processes, and catalysis, making it valuable for research in materials science and chemical engineering. -
Metal-organic Framework
5-(4-Formylphenoxy)isophthalic acid is a ligand utilized in the synthesis of metal-organic frameworks (MOFs). It functions by coordinating with metal ions to form stable porous structures that can be employed for gas storage, catalysis, and drug delivery applications. This compound's unique properties make it a valuable tool for research in materials science and nanotechnology. -
Metal-organic Framework
Lithium4-vinylbenzenesulfonate serves as a precursor for the synthesis of metal-organic frameworks (MOFs). This compound facilitates the formation of porous materials with tunable properties, promoting applications in gas storage, separation, and catalysis. Its unique structural characteristics make it ideal for research in materials science and nanotechnology. -
Metal-organic Framework
3,5-Di(1H-imidazol-1-yl)pyridine is a precursor for synthesizing metal-organic frameworks (MOFs), characterized by its ability to coordinate with various metal ions. This compound plays a significant role in enhancing the structural stability and functionality of MOFs. Its unique ligand properties enable applications in gas storage, catalysis, and heterogeneous catalysis research, making it a valuable tool in materials science and sustainable chemistry studies. -
Metal-organic Framework
(E)-5,5'-(Diazene-1,2-diyl)diisophthalic acid serves as a foundational building block for the synthesis of metal-organic frameworks (MOFs). This compound exhibits unique coordination properties, enabling its use as a ligand in the fabrication of MOFs with tailored porosity and structural characteristics. Its applications extend to gas adsorption, catalysis, and the development of advanced materials for energy storage and environmental remediation. -
Metal-organic Framework
3,3'-Dimethyl-4,4'-bipyridine serves as a crucial ligand for metal-organic frameworks (MOFs). This compound enhances the stability and structural integrity of MOFs, facilitating their application in gas storage, separation processes, and catalysis. Its unique properties make it suitable for research in materials science and nanotechnology. -
Metal-organic Framework
CAU-1-NH2(Al) is a metal-organic framework (MOF) characterized by its amine-functionalized structure. This compound exhibits significant porosity and tunable surface chemistry, making it suitable for applications in gas storage, separation, and catalysis. Its unique properties enable researchers to explore various areas of material science, environmental remediation, and energy storage. -
Metal-organic Framework
1,4-Benzenedicarboxylic acid, 2,3-dihydroxy-, 1,4-dihydrazide, also known as 2,3-Dihydroxyterephthalohydrazide, serves as a key building block in the synthesis of metal-organic frameworks (MOFs). This compound exhibits significant potential in applications related to gas storage, catalysis, and separation technologies. Its dual functional groups enhance coordination with metal ions, thereby facilitating the formation of robust MOF structures suitable for various research applications in material science and chemistry. -
Metal-organic Framework
1,4-Bis(methoxy)-2,5-bis(4,2':6',4"-terpyridin-4'-yl)benzene functions as a ligand for the development of metal-organic frameworks (MOFs). It exhibits significant coordination properties, enabling the formation of stable structures with transition metals. This compound is applicable in various research areas, including catalysis, gas storage, and separation processes, contributing to advancements in materials science and nanotechnology. -
Metal-organic Framework
5,5'-(Ethane-1,2-diyl)diisophthalic acid serves as a vital building block in the formation of metal-organic frameworks (MOFs). Its structural characteristics facilitate the synthesis of MOFs with enhanced stability and tunable porosity. This compound is utilized in materials science and catalysis research, enabling advancements in gas storage, separation processes, and heterogeneous catalysis applications. -
Metal-organic Framework
2'-Amino-5'-(4-carboxyphenyl)-4'-methyl-[1,1':3',1''-terphenyl]-4,4''-dicarboxylic acid is a versatile ligand utilized in the formation of metal-organic frameworks (MOFs). This compound facilitates the coordination of metal ions, enhancing the stability and functionality of the resulting MOF structures. It plays a critical role in research applications related to gas storage, separation processes, and catalysis, making it an essential tool for advancing materials science and nanotechnology. -
Metal-organic Framework
9-(Pyridin-4-yl)acridine functions as a ligand in metal-organic frameworks (MOFs). Its unique structure allows for significant coordination with metal ions, facilitating the formation of diverse MOF architectures. This compound is of interest for applications in gas storage, photocatalysis, and as a platform for drug delivery systems in various fields of materials science and chemistry research. -
Metal-organic Framework
5,10,15,20-Tetrakis(2,6-dibromophenyl)-21H,23H-porphine functions as a metal-organic framework (MOF) with potential applications in catalysis and gas adsorption. This compound exhibits unique structural properties that enhance its interactions with metal ions, enabling functionalities in advanced materials science. Its versatility makes it a valuable tool in studies related to environmental sensing and energy storage systems. -
Metal-organic Framework
1,4-Bis(pyridin-4-ylmethoxy)benzene functions as a key component in the synthesis of metal-organic frameworks (MOFs). It exhibits significant structural versatility, facilitating the formation of porous materials for various applications. This compound is valuable in fields such as gas storage, catalysis, and drug delivery due to its ability to create stable frameworks with tunable properties. -
Metal-organic Framework
N-(Pyridin-4-yl)pyridine-2-carboxamide serves as an effective ligand in the formation of metal-organic frameworks (MOFs). This compound exhibits significant coordination properties, making it suitable for the synthesis of novel MOF materials. Its unique structural features enable potential applications in gas storage, separation processes, and catalysis research, contributing to advancements in materials science and chemistry. -
Metal-organic Framework
2,2',3,3'-Oxydiphthalic acid is a versatile ligand that serves as a building block in the formation of metal-organic frameworks (MOFs). It exhibits strong coordination properties, facilitating the assembly of complex structures with metal ions. This compound is valuable in research applications involving gas storage, catalysis, and environmental remediation, making it an important tool in the development of advanced materials for various scientific fields. -
Metal-organic Framework
3-(3-Carboxyphenyl)-5-methoxybenzoic acid serves as a critical building block in the synthesis of metal-organic frameworks (MOFs). This compound facilitates the formation of coordination networks, enhancing properties such as porosity and stability. Its application in material science and catalysis makes it valuable for research in gas storage, separation processes, and heterogeneous catalysis. -
Metal-organic Framework
4,4',4'',4'''-(1,3,6,8-Pyrenetetrayltetra-2,1-ethynediyl)tetrakis benzoic acid is a prominent ligand for the development of metal-organic frameworks (MOFs). This compound facilitates the coordination of metal ions, enabling the formation of robust and porous structures with potential applications in gas storage, catalysis, and environmental remediation. Its unique pyrene-based architecture enhances the stability and functionality of MOFs, making it a valuable reagent for advanced materials research. -
Metal-organic Framework
5'-(4-Carboxyphenyl)-2'-nitro-[1,1':3',1''-terphenyl]-4,4''-dicarboxylic acid serves as a key building block for the synthesis of metal-organic frameworks (MOFs). This compound exhibits the ability to coordinate with metal ions, facilitating the formation of intricate porous structures. Its applications in gas adsorption, catalysis, and drug delivery make it a valuable reagent for researchers exploring advanced material science and nanotechnology. -
Metal-organic Framework
3,8-Di(thiophen-2-yl)-1,10-phenanthroline is a metal-organic framework compound known for its coordination properties with transition metals. It exhibits potential in various applications including catalysis, gas storage, and sensing, due to its structural versatility and high surface area. This compound is of significant interest in materials science and supramolecular chemistry research. -
Metal-organic Framework
NTU-9 is a metal-organic framework (MOF) designed for applications in gas storage and separation, catalysis, and environmental remediation. Its stable structure and tunable porosity make it suitable for capturing carbon dioxide and other pollutants from various environments. Researchers can employ NTU-9 to explore its potential in advanced materials science and sustainable energy solutions. -
Metal-organic Framework
4,4',4",4"'-(Pyrene-1,3,6,8-tetrayl)tetrakis(3-aminobenzoic acid) functions as a metal-organic framework (MOF), providing a versatile platform for various applications in chemical research. This compound exhibits unique luminescent properties, making it suitable for studies related to catalysis, gas storage, and sensing. Its structural stability and functional groups enhance interactions with metal ions, facilitating the development of advanced materials in nanotechnology and environmental science. -
Metal-organic Framework
5',5''''-((2,5-Bis(trifluoromethyl)-1,4-phenylene)bis(ethyne-2,1-diyl))bis(([1,1':3',1''-terphenyl]-4,4''-dicarboxylic acid)) is a metal-organic framework (MOF) designed for applications in gas storage and separation. This compound exhibits unique structural properties that facilitate the adsorption of various gases, making it a valuable tool in studies related to environmental science and materials chemistry. Its distinctive molecular architecture allows for the enhancement of gas uptake capacities, positioning it as a promising candidate for advancing research in catalysis and nanotechnology. -
Metal-organic Framework
2-[(1E)-2-Phenyldiazenyl]-1,4-benzenedicarboxylic acid is a versatile compound utilized in the synthesis of metal-organic frameworks (MOFs). This compound exhibits potential in various fields, including catalysis, gas storage, and sensing applications. Its structural properties enable the formation of stable frameworks that can enhance the efficiency of chemical processes. -
Metal-organic Framework
4,4'-(1,3-Phenylenebis(oxy))diphthalic acid is a key compound utilized in the synthesis of metal-organic frameworks (MOFs). It acts as a versatile ligand, facilitating the creation of porous materials with high surface areas. This compound is integral in various research applications, including gas storage, catalysis, and drug delivery systems, offering significant potential in materials science and nanotechnology. -
Metal-organic Framework
2',3,3'',5'-Tetramethyl[1,1':4',1'':terphenyl]-4,4''-dicarboxylic acid functions as a versatile ligand in the construction of metal-organic frameworks (MOFs). This compound facilitates the formation of robust crystalline structures that demonstrate high thermal stability and tunable porosity. Its unique molecular architecture allows for potential applications in gas storage, separation processes, and catalysis research, making it an essential reagent for studies in materials science and nanotechnology. -
Metal-organic Framework
Bis-5,5'-((anthracene-9,10-diylbis(methylene))(azanediyl))diisophthalic acid serves as a versatile building block for metal-organic frameworks (MOFs). This compound promotes the synthesis of MOFs with potential applications in gas storage, sensing, and catalysis due to its unique structural properties. Its incorporation into MOF architectures can enhance stability and reactivity, making it a valuable reagent for researchers studying advanced material sciences and their applications in environmental and energy-related fields. -
Metal-organic Framework
Methoxytris(perfluorophenyl)silane serves as a precursor for the synthesis of metal-organic frameworks (MOFs). This compound facilitates the creation of robust and porous materials, which exhibit diverse applications in gas storage, separation, and catalysis. Its unique chemical properties allow for the incorporation of functional groups, enhancing the performance of MOFs in various research settings. -
Metal-organic Framework
PCN 224 is a metal-organic framework (MOF) known for its exceptional porosity and surface area. It exhibits significant potential for gas adsorption and storage applications, making it valuable for research in filtration, catalysis, and environmental remediation. This compound serves as an important tool in the development of advanced materials for energy and environmental technologies. -
Metal-organic Framework
1,3,5-Tris(2,6-dimethylpyridin-4-yl)benzene is a versatile building block for the synthesis of metal-organic frameworks (MOFs). This compound plays a crucial role in coordinating various metal ions, facilitating the formation of robust and highly porous structures. Its unique molecular architecture enables applications in gas storage, catalysis, and separation processes, making it an essential reagent for researchers investigating advanced material properties. -
Metal-organic Framework
3,3′-Dimethoxy[1,1′-biphenyl]-4,4′-dicarboxylic acid is a key building block for the synthesis of metal-organic frameworks (MOFs). It features carboxylic acid functional groups that facilitate coordination with metal ions, leading to the formation of stable and porous crystalline structures. This compound is valuable in research applications related to gas storage, separation technologies, and catalysis, contributing to advancements in materials science and related fields. -
Metal-organic Framework
5'-(Trifluoromethyl)-[1,1':3',1''-terphenyl]-3,3'',5,5''-tetracarboxylic acid serves as a precursor for the synthesis of metal-organic frameworks (MOFs). This compound features multiple carboxylic acid functional groups that coordinate effectively with metal centers, enhancing the structural integrity and porosity of the resulting frameworks. Its unique trifluoromethyl substitution offers potential for tuning the properties of the MOFs for applications in gas storage, separation technologies, and catalysis. -
Metal-organic Framework
2,6-Bis((1H-imidazol-1-yl)methyl)pyridine functions as a ligand in metal-organic frameworks (MOFs), facilitating the coordination of metal ions. This compound exhibits significant biological activity, making it useful in the development of advanced materials for gas storage, separation, and catalysis. Its unique properties make it valuable for research applications in materials science and coordination chemistry. -
Metal-organic Framework
4,4'-(1-Benzyl-1H-1,2,4-triazole-3,5-diyl)dipyridine is a versatile ligand designed for the development of metal-organic frameworks (MOFs). This compound exhibits significant coordination properties that facilitate the formation of porous structures, making it suitable for applications in gas storage, catalysis, and separation processes. Its unique triazole and dipyridine moieties enhance stability and function, making it a valuable tool for researchers in materials science and coordination chemistry. -
Metal-organic Framework
4,4'-((1E,1'E)-(2,5-Dimethoxy-1,4-phenylene)bis(ethene-2,1-diyl))dibenzoic acid is a versatile ligand used in the synthesis of metal-organic frameworks (MOFs). It functions primarily by coordinating with metal centers, facilitating the formation of stable and functional network structures. This compound exhibits significant potential in applications such as gas storage, catalysis, and sensing, making it a valuable tool for researchers exploring advanced materials. -
Metal-organic Framework
3,5-Di([2,2':6',2''-terpyridin]-4'-yl)phenol functions as a ligand in the formation of metal-organic frameworks (MOFs). This compound exhibits significant coordination properties, enabling its application in the synthesis of materials for gas adsorption, ion exchange, and catalysis. Its unique structural attributes make it an important reagent for researchers in the field of material science and coordination chemistry. -
Metal-organic Framework
Naphthalene-1,4,6-tricarboxylic acid acts as a versatile ligand for the formation of metal-organic frameworks (MOFs). This compound exhibits strong coordination capabilities with various metal ions, facilitating the development of MOFs with tailored porosity and chemical properties. It is widely utilized in research applications involving gas storage, separation, and catalysis, providing a platform for innovative materials in material science and environmental technologies. -
Metal-organic Framework
5-(2-Hydroxypyrimidin-5-yl)isophthalic acid serves as a key building block for the synthesis of metal-organic frameworks (MOFs). This compound exhibits versatile coordination properties, facilitating the development of MOFs with tailored pore structures and functionalities. Its applications extend to gas storage, catalysis, and sensing, making it a valuable tool in materials science and chemical research. -
Metal-organic Framework
2,6-Di(1H-pyrazol-3-yl)pyridine serves as a key ligand in the formation of metal-organic frameworks (MOFs). This compound exhibits excellent coordination properties, facilitating the synthesis of MOFs with desirable structural and functional characteristics. It is widely used in research applications involving gas storage, catalysis, and environmental remediation due to its ability to form stable complexes with various metal ions. -
Metal-organic Framework
4-Formyl-3-hydroxy-2-naphthoic acid serves as a key component in the synthesis of metal-organic frameworks (MOFs). Its structural properties enable the formation of robust coordination networks, facilitating various applications in gas storage, separation, and catalysis. This compound is particularly valuable for researchers exploring novel MOF materials and their potential uses in environmental and energy-related fields. -
Metal-organic Framework
(R)-5-(2-Carboxypyrrolidine-1-carbonyl)isophthalic acid serves as a building block in the assembly of metal-organic frameworks (MOFs). Its unique structural characteristics facilitate coordination with metal ions, enabling the formation of porous materials with diverse applications in gas storage, separation, and catalysis. This compound is valuable for researchers exploring the synthesis and functionalization of MOFs for advanced materials science and nanotechnology applications. -
Metal-organic Framework
5,5'-(Azanediylbis(sulfonyl))bis(2,4-dichlorobenzoic acid) tetrahydrate is a metal-organic framework (MOF) that exhibits significant structural versatility and stability. This compound is utilized in the synthesis of novel MOFs for applications in gas adsorption, catalysis, and sensing. Its unique properties make it suitable for advanced research in materials science and nanotechnology. -
Metal-organic Framework
3-(2H-Tetrazol-5-yl)pyridine serves as a key component in the formation of metal-organic frameworks (MOFs). This compound exhibits significant potential in applications such as gas storage, catalysis, and drug delivery due to its tunable porous structure. Its ability to coordinate with various metal ions enhances the stability and functionality of MOFs, making it a valuable reagent for materials science and chemical research. -
Metal-organic Framework
2,6-Difluoro-4-(1H-pyrazol-4-yl)benzoic acid functions as a ligand in the synthesis of metal-organic frameworks (MOFs). This compound exhibits the ability to coordinate with metal centers, facilitating the formation of intricate structures that enhance gas adsorption and catalytic activity. It is utilized in various research applications, including catalysis, gas storage, and environmental remediation studies. -
Metal-organic Framework
1,1'-Diphenyl-[4,4'-bipyridine]-1,1'-diium chloride serves as a valuable building block in the formation of metal-organic frameworks (MOFs). This compound exhibits significant structural versatility and stability, making it useful for applications in gas storage, catalysis, and sensing. Its unique properties enhance the development of advanced materials for various scientific investigations and technological applications. -
Metal-organic Framework
5,10,15,20-Tetrakis(4-carboxymethyloxyphenyl)porphyrin nickel functions as a metal-organic framework (MOF) with potential applications in materials science and catalysis. This compound exhibits significant stability and porosity, making it suitable for gas storage, separation, and heterogeneous catalysis studies. Its unique structural properties allow for the exploration of various functionalizations and interactions within the framework, contributing valuable insights into the design of advanced materials. -
Metal-organic Framework
1,4-Bis((3,5-dimethyl-1H-pyrazol-4-yl)methyl)benzene serves as a building block in the formation of metal-organic frameworks (MOFs). It exhibits significant coordination ability that enables the development of porous materials with diverse applications in gas storage, separation, and catalysis. This compound is particularly useful in materials science and organic chemistry research focused on MOF synthesis and characterization. -
Metal-organic Framework
2,2'-Dimethyl-3,3'-bipyridine is a versatile ligand utilized in the development of metal-organic frameworks (MOFs). Its structure promotes coordination with various metal ions, enhancing the stability and functional diversity of the resulting MOFs. This compound is significant for applications in gas storage, separation, and catalysis, making it a valuable tool in materials science and chemical research.

