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UiO-66-NO2 as an Oxygen “Pump” for Enhancing Oxygen Reduction

UiO-66-NO2 as an Oxygen “Pump” for Enhancing Oxygen Reduction

Investigation of photocatalytic-proxone process performance in the degradation of toluene and ethyl benzene from polluted air

Chemosensors, Free Full-Text

Chemosensors, Free Full-Text

Efficient degradation of toluene over ultra-low Pd supported on UiO-66 and its functional materials: Reaction mechanism, water-resistance, and influence of SO2 - ScienceDirect

PDF) Production of eco friendly DME fuel over sonochemically synthesized UiO66 catalyst

Effect of Synthesis Temperature on Water Adsorption in UiO-66 Derivatives: Experiment, DFT+D Modeling, and Monte Carlo Simulations

Investigation into the Adsorption of Methylene Blue and Methyl Orange by UiO -66-NO2 Nanoparticles

PDF) The Effects of Functional Groups and Missing Linkers on the Adsorption Capacity of Aromatic Hydrocarbons in UiO-66 Thin Films

Efficient degradation of toluene over ultra-low Pd supported on UiO-66 and its functional materials: Reaction mechanism, water-resistance, and influence of SO2 - ScienceDirect

Recent advances in metal–organic frameworks for water absorption and their applications - Materials Chemistry Frontiers (RSC Publishing) DOI:10.1039/D3QM00484H

Investigation into the Adsorption of Methylene Blue and Methyl Orange by UiO -66-NO2 Nanoparticles