Title : Carbonization of Fe-Based Metal Organic Frameworks with Mesoporous Structure as Electrocatalyst for Catalysis of Oxygen to Hydrogen Peroxide.

Pub. Date : 2018 Jul 1

PMID : 29442644






2 Functional Relationships(s)
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1 The pyrolysis of Fe-MOF with the largest amount of mesopores resulted in its carbonization and produced gamma-Fe2O3@carbon material, significantly reduced the BET surface area from 3036 m2 g-1 to 387 m2 g-1, but increased the average pore diameter up to 5.78 nm and disintegrated their octahedral structures to an irregular morphology of Fe-MOF (550), and modified the carbon matrix with trace oxygen and metal oxides. Carbon lysine acetyltransferase 8 Homo sapiens
2 The pyrolysis of Fe-MOF with the largest amount of mesopores resulted in its carbonization and produced gamma-Fe2O3@carbon material, significantly reduced the BET surface area from 3036 m2 g-1 to 387 m2 g-1, but increased the average pore diameter up to 5.78 nm and disintegrated their octahedral structures to an irregular morphology of Fe-MOF (550), and modified the carbon matrix with trace oxygen and metal oxides. Carbon lysine acetyltransferase 8 Homo sapiens