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- W2523234865 abstract "Owing to their intriguing properties, aerogels with rich and hierarchical pore systems are best appreciated in catalysis, sensing, and separation technologies. Herein, a comprehensive study is presented for inorganic monolithic aerogel of Ag doped MnO2 (Ag-MnO2), synthesized solely out of nanowires of diameter ∼10 nm. We demonstrated a 3D image of the full bulk structure of the aerogel using X-ray computed tomography (μCT), providing a concise and statistical description of its porous structure for the first time. Interestingly, a flow-through supermacroporous system was observed as a result of freeze-drying. Owing to the rich pore system, the Ag-MnO2 aerogel monolith exhibited photocatalytic degradation of organic water pollutants, which was superior in performance as compared to that of the MnO2 powder and compressed Ag-MnO2 pellet. A detailed study of photocatalytic mechanism was also carried out, indicating that Ag can simultaneously modulate the physical and chemical properties of MnO2. This work hig..." @default.
- W2523234865 created "2016-09-30" @default.
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- W2523234865 date "2016-09-27" @default.
- W2523234865 modified "2023-10-16" @default.
- W2523234865 title "Visualization of the Formation and 3D Porous Structure of Ag Doped MnO<sub>2</sub> Aerogel Monoliths with High Photocatalytic Activity" @default.
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- W2523234865 doi "https://doi.org/10.1021/acssuschemeng.6b00578" @default.
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