Publication | Closed Access
Controlling catalytic dehydrogenation of formic acid over low-cost transition metal-substituted AuPd nanoparticles immobilized by functionalized metal–organic frameworks at room temperature
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Citations
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References
2016
Year
Materials ScienceRoom TemperatureChemical EngineeringEngineeringCatalytic DehydrogenationLow-cost CatalystHeterogeneous CatalysisFormic AcidCatalysisChemistryHydrogenCatalyst PreparationHydrogen GenerationCatalytic SynthesisHigh ActivityFunctionalized Groups
Through tuning the functionalized groups in MIL-101, the low-cost catalyst containing NH<sub>2</sub> exhibited remarkably high activity in dehydrogenation of HCOOH.
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