2022
DOI: 10.1016/j.greeac.2022.100039
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Material characterization combined with simple green chemistry method for integrated analysis of catalyst performance: A case study on MIL-53(Fe)

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Cited by 6 publications
(2 citation statements)
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“…MIL-53 (Al) exhibits a peculiar phenomenon known as "Breathing behavior" related to the hydrogen bonding interaction between the carboxylate groups of the BCD linker and the trapped water molecules, resulting in the contraction of its rhombic channels during hydration or dehydration. Compared with the strong adsorption capacity of MIL-53(Al), MIL-53(Fe) has higher light absorption performance [25]. Nevertheless, its adsorption capacity is weak due to its small specific surface area.…”
Section: Mil-53mentioning
confidence: 99%
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“…MIL-53 (Al) exhibits a peculiar phenomenon known as "Breathing behavior" related to the hydrogen bonding interaction between the carboxylate groups of the BCD linker and the trapped water molecules, resulting in the contraction of its rhombic channels during hydration or dehydration. Compared with the strong adsorption capacity of MIL-53(Al), MIL-53(Fe) has higher light absorption performance [25]. Nevertheless, its adsorption capacity is weak due to its small specific surface area.…”
Section: Mil-53mentioning
confidence: 99%
“…and the trapped water molecules, resulting in the contraction of its rhombic channels during hydration or dehydration. Compared with the strong adsorption capacity of MIL-53(Al), MIL-53(Fe) has higher light absorption performance [25]. Nevertheless, its adsorption capacity is weak due to its small specific surface area.…”
Section: Mil-88mentioning
confidence: 99%