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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | Effect of electrical parameters on morphology, chemical composition, and photoactivity of the nano-porous titania layers synthesized by pulse-microarc oxidation | Bayati, M. R. | 2010 |
Duty cycle.
Frequency. Microarc oxidation. Photocatalytic. Pulse current. Titania. Applied voltages. Atomic force microscopes. Chemical compositions. Current frequency. Decomposition rate. Duty cycles. Electrical parameter. Methylene blue solution. Nano-porous. Photo-catalytic. Photoactivity. Photocatalytic performance. Porous structures. Pulse currents. Rutile phasis. Scanning electron microscopes. Surface chemical composition. TiO. Ultraviolet irradiations. UV irradiation. Irradiation. Microscopes. Morphology. Oxidation. Oxide minerals. Scanning electron microscopy. Surface topography. Titanium dioxide. X ray diffraction. X ray photoelectron spectroscopy. Surface morphology. |
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| 2 | مقاله | Mapping the spatiotemporal variability of salinity in the hypersaline Lake Urmia using Sentinel-2 and Landsat-8 imagery | Bayati, M. | Elsevier B.V, | 2021 |
Causeways.
Dissolution. Evaporation. Flow of water. Fuzzy inference. Fuzzy neural networks. Lakes. Learning algorithms. Linear regression. Machine learning. Precipitation (chemical) Satellite imagery. Water quality. Wind. Adaptive network based fuzzy inference system. Model calibration and validation. Multiple linear regression models. Spatio-temporal dynamics. Spatio-temporal resolution. Spatiotemporal distributions. Spatiotemporal variability. Water surface reflectance. Saline water. Artificial neural network. Concentration (composition) In situ measurement. Lacustrine environment. Landsat. Mapping method. Precipitation (chemistry) Salinity. Satellite data. Sentinel. Spatiotemporal analysis. Iran. Lake Urmia. |
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| 3 | مقاله | Micro arc oxidation of nano-crystalline Ag-doped TiO2 semiconductors | Bayati, M. R. | 2011 |
Absorption edges.
Anatase phase. Crystalline size. Diffraction angle. Doped-TiO. Doping. Microarc. Microarc oxidation. Nano-structured layer. Nanocrystallines. Red shift. Rutile phasis. TiO. Titania. UV-Vis spectrophotometers. XPS. XRD. Crystalline materials. Oxidation. Oxide minerals. Semiconductor doping. Titanium. Titanium dioxide. Silver. |
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| 4 | مقاله | Visible photodecomposition of methylene blue over micro arc oxidized WO3-loaded TiO2 nano-porous layers | Bayati, M. R. | 2010 |
Methelyne blue.
Absorption edges. Applied voltages. Band gap energy. Chemical compositions. Composite layer. Data analysis. Decomposition rate. Electrolyte concentration. Energy dispersive X ray spectroscopy. Growth mechanisms. Matrix. Microarc. Microarc oxidation. Nano-porous. Phosphate salts. Photo-decomposition. Photo-irradiation. Photocatalytic activities. Porous structures. Rough surfaces. SEM. Sodium tungstate. TiO. Tungsten oxide. UV-Vis spectrophotometers. Atomic force microscopy. Data reduction. Electrolytes. Oxide minerals. Photocatalysis. Porous materials. Scanning electron microscopy. Surface roughness. Surface structure. Titanium. Titanium dioxide. Tungsten. Tungsten compounds. X ray diffraction. X ray photoelectron spectroscopy. X ray spectroscopy. X rays. Titanium oxides. |
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| 5 | مقاله | On the photocatalytic activity of the sulfur doped titania nano-porous films derived via micro-arc oxidation | Bayati, M. R. | 2010 |
TiO2.
Absorption edges. AFM. Applied voltages. Band gap energy. Degradation rate. Doped layers. Doped titania. Doped-TiO. Doping. Electrolyte compositions. Electrolyte concentration. Methylene Blue. Microarc oxidation. Nano-porous films. Photoactivity. Photocatalytic activities. Photocatalytic performance. Physical and chemical properties. Rutile phasis. SEM. Sulfur concentrations. TiO. Titania. UV irradiation. UV- and. UV-Vis spectrophotometers. Visible irradiation. XPS. XRD. Chemical properties. Degradation. Electrolytes. Irradiation. Optical properties. Organic polymers. Oxidation. Oxide minerals. Photocatalysis. Sulfur. Titanium dioxide. X ray photoelectron spectroscopy. Doping (additives) |
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| 6 | مقاله | Synthesis of narrow band gap (V2O5)x-(TiO2)1-x nano-structured layers via micro arc oxidation | Bayati, M. R. | 2010 |
Vanadium oxides.
Ceramics. Photo-catalysis. Titanium oxide. Vanadium oxide. Absorption edges. Applied voltages. Atomic force microscopes. Band gap energy. Chemical compositions. Composite layer. Decomposition rate. Methylene blue. Methylene blue solution. Micro arc oxidation. Nano-structured layer. Narrow band gap. Photo-catalytic. Scanning electron microscopes. Sheet-like. Sheet-like structure. TiO. Titania layers. UV-vis spectrophotometers. Micro arc oxidation. Vanadium pentoxide. Visible irradiation. Visible wavelengths. Catalysis. Cavity resonators. Ceramic materials. Energy gap. Irradiation. Microscopes. Morphology. Optical properties. Oxidation. Oxide minerals. Scanning electron microscopy. Surface topography. Synthesis (chemical) Titanium. Titanium dioxide. Titanium oxides. Vanadium. Vanadium alloys. Vanadium compounds. X ray diffraction. X ray photoelectron spectroscopy. |
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| 7 | مقاله | Photo-degradation of methelyne blue over V2O5- TiO2 nano-porous layers synthesized by micro arc oxidation | Bayati, M. R. | 2010 |
Vanadium oxide.
Applied voltages. Band gap energy. Methylene blue solution. Microarc oxidation. Nano-porous. Porous layers. TiO. Titania layers. UV irradiation. Vanadia-titania. Vanadium oxide. Vanadium oxides. Vanadium pentoxide. Catalysis. Cavity resonators. Oxidation. Oxide minerals. Rate constants. Titanium. Titanium dioxide. Vanadium. Vanadium alloys. Vanadium compounds. Titanium oxides. |
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| 8 | مقاله | The effect of growth parameters on photo-catalytic performance of the MAO-synthesized TiO2 nano-porous layers | Bayati, M. R. | 2010 |
Nano structures.
Porous materials. Anode surfaces. Applied voltages. Band gap energy. Breakdown voltage. Chemical compositions. Chemical synthesis. Concentration of. Critical voltages. Decomposition rate. Electrolyte concentration. Energy dispersive. Gas layers. Growth parameters. Methylene Blue. Methylene blue solution. Microarc oxidation. Nano-porous. Photo-catalytic. Photocatalytic activities. Rutile phasis. Scanning electron microscopes. Surface pores. Synthesis parameters. TiO. UV irradiation. UV-Vis spectrophotometers. Catalyst activity. Cavity resonators. Concentration (process) Electrolysis. Electrolytes. Energy gap. Nanostructures. Optical properties. Oxidation. Oxide minerals. Porous materials. Scanning electron microscopy. Spectrophotometry. Surface structure. Titanium. Titanium dioxide. X ray diffraction. X ray photoelectron spectroscopy. Synthesis (chemical) |
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| 9 | مقاله | How photocatalytic activity of the MAO-grown TiO2 nano/micro-porous films is influenced by growth parameters? | Bayati, M. R. | 2010 |
Micro-arc oxidation.
AFM. Applied voltages. Catalytic applications. Chemical compositions. Concentration of. Electrolyte concentration. Growth parameters. Methylene blue solution. Oxide materials. Photocatalytic activities. Photocatalytic performance. Porous film. Porous layers. Process time. Rutile phasis. SEM. TiO. UV irradiation. Cavity resonators. Electrolytes. Oxide minerals. Photocatalysis. Surface roughness. Surface structure. Titanium. Titanium dioxide. Titanium oxides. Catalytic oxidation. |
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| 10 | مقاله | In situ growth of vanadia-titania nano/micro-porous layers with enhanced photocatalytic performance by micro-arc oxidation | Bayati, M. R. | 2010 |
Methylene blue.
Micro-arc oxidation. Porous. Titanium oxide. Vanadium oxide. Applied voltages. Atomic force microscopes. Band gap energy. Chemical compositions. Composite layer. Efficient method. Electrolyte concentration. In-situ growth. Photocatalytic performance. Photocatalytic reactions. Porous layers. Porous titanium. Scanning electron microscopes. TiO. UV-Vis spectrophotometers. Vanadia-titania. Vanadium oxides. Vanadium pentoxide. Visible irradiation. Cavity resonators. Electrolytes. Microscopes. Optical properties. Oxidation. Oxide minerals. Photodegradation. Rate constants. Scanning electron microscopy. Surface morphology. Surface roughness. Synthesis (chemical) Titanium. Titanium dioxide. Titanium oxides. Vanadium. Vanadium alloys. Vanadium compounds. X ray diffraction. X ray photoelectron spectroscopy. |
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| 11 | پایان نامه | مطالعه نحوه تصفیه آلودگی های نفتی آب های همراه با روش هوای محلول و استخراج Treatment of Oilfield Produced Water with Dissolved Air Precipitation/ Solvent Sublation | بیاتی، فاطمه Bayati, Fatemeh | صنعتی شریف | 1387 | آب تولیدشده همراه نفت Producted Water / آلودگی نفتی Oil Pollution / استخراج Extraction / تصفیه Treatment / هوای محلول Air Floatation |
06-39462
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| 12 | مقاله | In situ derivation of sulfur activated TiO2 nano porous layers through pulse-micro arc oxidation technology | Bayati, M. R. | 2011 |
A. Oxides.
D. Catalytic properties. A. Nanostructures. A. Oxides. A. Thin films. Catalytic properties. D. Surface properties. Epitaxial films. Irradiation. Oxidation. Oxide minerals. Photocatalysis. Rate constants. Sulfur. Surface properties. Synthesis (chemical) Titanium dioxide. |
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| 13 | مقاله | A strategy for single-step elaboration of V2O 5-grafted TiO2 nanostructured photocatalysts with evenly distributed pores | Bayati, M. R. | 2011 |
Catalytic properties.
Micro arc oxidation. Oxide. Surfaces. Catalytic applications. Duty cycles. Electric variables. Methylene Blue. Micro arc oxidation. Model materials. Nano-structured. Photocatalytic efficiency. Photocatalytic performance. Porous layers. Porous structures. Pulse currents. Rough surfaces. SEM. Single-step. Surface area. TiO. Vanadium oxides. XPS. XRD. Catalytic oxidation. Oxide minerals. Surfaces. Titanium. Titanium dioxide. Vanadium. Vanadium compounds. Surface morphology. |
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| 14 | مقاله | (WO3)x-(TiO2)1-x nano-structured porous catalysts grown by micro-arc oxidation method: Characterization and formation mechanism | Bayati, M. R. | 2010 |
Ceramics.
Films. Methylene blue. Micro-arc oxidation. Photocatalysis. Porous. AFM. Applied voltages. Band gap energy. Chemical compositions. Degradation rate. Degradation rate constants. Formation mechanism. matrix. Microarc oxidation. Model materials. Nano-structured. Photocatalytic efficiency. Porous catalysts. SEM. TiO. Tungsten oxide. UV-Vis spectrophotometers. Visible irradiation. XPS. XRD. Ceramic materials. Degradation. Optical properties. Oxidation. Surface roughness. Titanium. Titanium oxides. Tungsten. Rate constants. |
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| 15 | مقاله | Treatment of oilfield produced water by dissolved air precipitation/solvent sublation | Bayati, F. | 2011 |
Dissolved air precipitation.
Produced water. Dissolved air. Solvent sublation. TOG. Benzene. Colloid chemistry. Dissolution. Mathematical models. Oil fields. Pressure effects. Salinity measurement. Separation. Toluene. Water treatment. BTEX. Bubble. Oil field. precipitation (chemistry) Pressure effect. Salinity. Solvent. |
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| 16 | مقاله | A heuristic method for finding the optimal number of clusters with application In medical data | Bayati, H. | IEEE Computer Society, | 2008 |
Fuzzy clustering.
Fuzzy inference. Fuzzy systems. K-means clustering. Simulated annealing. Cluster validity indices. Davies-Bouldin index. Fuzzy C mean. Growing neural gas. K-means. Medical data. Medical data sets. Optimal number. Heuristic methods. Algorithm. Artificial intelligence. Automated pattern recognition. Biological model. Cluster analysis. Computer simulation. Fuzzy logic. Methodology. Statistical analysis. Statistical model. Theoretical model. Algorithms. Artificial Intelligence. Cluster Analysis. Computer Simulation. Data Interpretation, Statistical. Gene Expression Profiling. Medical Informatics. Models, Genetic. Models, Statistical. Models, Theoretical. Pattern Recognition, Automated. |
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| 17 | پایان نامه | برآورد تغییرات مکانی و زمانی شوری سطح دریاچه ی ارومیه با استفاده از سنجش از دور و یادگیری ماشین Estimating the Spatial and Temporal Changes in The Salinity of the Hyper-Saline Lake Urmia Using Sentinel-2 Imagery | بیاتی، مجید Bayati, Majid | صنعتی شریف | 1399 | یادگیری ماشینی Machine Learning / حوضه آبریز دریاچه ارومیه (اردبیل) Lake Urmia Watershed / سنجش از دور Remote Sensing / غلظت نمک Salinity / ماهواره سنتینل Sentinel Satellite / ماهواره لندست - 8 Landsat-8 Satellite |
09-53975
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| 18 | مقاله | On the growth and photocatalytic activity of the vertically aligned ZnO nanorods grafted by CdS shells | Zirak, M. | 2013 |
Core-shell.
Nanorod. Photocatalytic activity. Maximum reaction rate. Multi-step procedures. Photocatalytic activities. Photocatalytic efficiency. Photocatalytic property. UV-vis spectrophotometry. Visible irradiation. Aromatic compounds. Cadmium sulfide. Electronic structure. Irradiation. Nanorods. Optical properties. Photocatalysis. Rate constants. Shells (structures) Sol-gel process. Sol-gels. Zinc oxide. |
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| 19 | پایان نامه | بررسی تأثیر افزودن تنگستن و آهن بر قابلیت شیشهای شدن پوششهای پایه کبالت به کمک شبیهسازی بروش دینامیک مولکولی Molecular Dynamics Study of Tungsten and Iron Addition on the Glass Formability of Cobalt-based Electrodeposited Coatings | بیاتی، محمد باقر Bayati, Mohammad Baher | صنعتی شریف | 1397 | قابلیت شیشه ای شدن Glass Forming Ability / شیشه فلزات حجمی Bulk Metallic Glass / شبیه سازی دینامیک مولکولی Molecular Dynamic Simulation / تحلیل ورونویی Voronoi Analysis / شاخص ورونویی Voronoi Index / سوپرآلیاژ پایه کبالت Cobalt Base Superalloy |
07-51548
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| 20 | مقاله | Micro-arc oxidized S-TiO2 nanoporous layers: Cationic or anionic doping? | Bayati, M.R. | 2010 |
Porosity.
TiO2. Band gap energy. Crystalline lattice. Doping. Maximum values. Microarc. Microarc oxidation. Nano-materials. Nanoporous layers. Porous morphology. S-doped TiO. SEM. Sulfur concentrations. TiO. Titania. Titanium substrates. UV-Vis spectrophotometers. XPS. XRD analysis. Dyes. Nanostructured materials. Oxidation. Sulfur. Titanium. Titanium dioxide. Doping (additives) |
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