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Angewandte Chemie (International ed.), ISSN 1433-7851, 2013, Volume 52, Issue 22, pp. 5776 - 5779
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 01/2016, Volume 283, pp. 1127 - 1136
[Display omitted] •Fe3O4 was masterly modified by distillation–precipitation polymerization.•Core–shell magnetic MOFs were fabricated by versatile step-by-step... 
Core–shell | Magnetic | Adsorption | Metal–organic frameworks | Methylene blue | Core-shell | Metal-organic frameworks | MICROSPHERES | STABILITY | SORPTION | AQUEOUS-SOLUTION | ENGINEERING, CHEMICAL | DYE | ENGINEERING, ENVIRONMENTAL | ADSORPTION CAPACITY | FABRICATION | SEPARATION | SOLID-PHASE EXTRACTION | WATER | Polymerization | Precipitation (Meteorology) | Magnetic fields | Acrylic acid | Green technology
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 04/2014, Volume 147, pp. 554 - 561
....•The ZnO@mpg-C3N4 showed remarkably UV and visible light photocatalytic activity.•The core–shell structure favors the transport of both electrons and holes... 
mpg-C3N4 | ZnO | Core–shell structure | Photocatalysis | Core-shell structure | Mpg-C | OXIDATION | METHYLENE-BLUE | SEMICONDUCTORS | CHEMISTRY, PHYSICAL | CARBON NITRIDE | HYBRIDIZATION | ENGINEERING, CHEMICAL | FILMS | ENGINEERING, ENVIRONMENTAL | DEGRADATION | TIO2
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 05/2016, Volume 185, pp. 242 - 252
...–shell structure was successfully fabricated for the first time through a facile in-situ hydrothermal method, in which MoS2 shell thickness was easily tuned by varying the concentration of MoS2 precursor in the solution... 
p–n heterojunction photocatalyst | Core–shell | Photocatalytic mechanism | n-BiVO4@p-MoS2 | @p-MoS | P-n heterojunction photocatalyst | N-BiVO | Core-shell | p-n heterojunction photocatalyst | OXIDE | ONE-STEP SYNTHESIS | HYDROGEN GENERATION | BISMUTH VANADATE | CHEMISTRY, PHYSICAL | BIVO4 | ENGINEERING, CHEMICAL | IRRADIATION | ENGINEERING, ENVIRONMENTAL | SURFACE RECOMBINATION | CHARGE SEPARATION | PHOTOELECTROCHEMICAL WATER OXIDATION | HIGHLY EFFICIENT PHOTOCATALYSIS
Journal Article