2,2'-(Fumaroylbis(oxy))bis(3,5-dibromobenzoic acid) serves as a precursor for the synthesis of metal-organic frameworks (MOFs). This compound is characterized by its unique structural properties, enabling the formation of stable MOF materials. Research applications include gas storage, catalysis, and separation processes, making it a valuable reagent for materials science and chemical engineering studies. Its functional groups contribute to enhanced metal coordination, facilitating efficient framework design.
2,2'-(Fumaroylbis(oxy))bis(3,5-dibromobenzoic acid) serves as a precursor for the synthesis of metal-organic frameworks (MOFs). This compound is characterized by its unique structural properties, enabling the formation of stable MOF materials. Research applications include gas storage, catalysis, and separation processes, making it a valuable reagent for materials science and chemical engineering studies. Its functional groups contribute to enhanced metal coordination, facilitating efficient framework design.
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