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Strong pyro-catalysis of pyroelectric BiFeO<sub>3</sub>nanoparticles under a room-temperature cold–hot alternation
209
Citations
54
References
2016
Year
Environmental ElectrochemistryEngineeringGreen ChemistryPyroelectric EffectNanoheterogeneous CatalysisChemistryWastewater TreatmentChemical EngineeringMultiferroicsGreen NanotechnologyPyroelectric Bifeo3 NanoparticlesMaterials ScienceUltrahigh Degradation EfficiencyCatalytic ApplicationNanotechnologyCatalyst RecyclingCatalysisStrong Pyro-catalysisPyroelectricityMagnetoelectric MaterialsNanomaterialsEnvironmental EngineeringHydrothermal Processing
A strong pyro-catalytic dye degradation with an ultrahigh degradation efficiency (>99%) in hydrothermally synthesized pyroelectric BiFeO3 nanoparticles was achieved under a room-temperature cold-hot alternating excitation (between 27 °C to 38 °C). The pyro-catalysis originated from a combination of the pyroelectric effect and the electrochemical oxidation-reduction reaction. The intermediate products (hydroxyl radicals and superoxide radicals) of pyro-electro-catalysis were observed. Pyro-catalysis provides a highly efficient and reusable dye wastewater decomposition technology through utilizing environmental day-night temperature variation.
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