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tavakoli--mehdi
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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | پایان نامه |
چکیده سازی و جستجوی داده ها در شبکه های کامپیوتری
Summarizing and Searching Data in Computer Networks |
توکلی، مهدی Tavakoli, Mehdi | صنعتی شریف | 1390 | شبکه های کامپیوتری Computer Networks / خلاصه سازی Summarization / اثر انگشت Fingerprint / مثبت کاذب False Positive / جستجوی مبهم Wildcard Searching |
02-42952
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| 2 | مقاله | Organic halides and nanocone plastic structures enhance the energy conversion efficiency and self-cleaning ability of colloidal quantum dot photovoltaic devices | Tavakoli, M. M. | American Chemical Society, | 2017 |
Energy efficiency.
Solar cells. Heterojunctions. Ligands. Nanocrystals. Nanostructures. Narrow band gap semiconductors. Passivation. Quantum theory. Semiconductor quantum dots. Silicones. Energy conversion. Thin films. Anodized aluminum oxide. Colloidal quantum dots. Electron transfer. Ligand exchanges. Photovoltaic devices. Plastic structure. Power conversion efficiencies. Time-resolved photoluminescence. Conversion efficiency. |
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| 3 | مقاله | Surface engineering of TiO2 ETL for highly efficient and hysteresis-less planar perovskite solar cell (21.4%) with enhanced open-circuit voltage and stability | Tavakoli, M. M. | Wiley-VCH Verlag, | 2018 |
Amorphous SnO2.
C-TiO2. Efficiency. Perovskites. Stability. UV stability. Cell engineering. Convergence of numerical methods. Efficiency. Electron transport properties. Hysteresis. Open circuit voltage. Perovskite. Solar cells. Stability. Timing circuits. Titanium dioxide. Carrier recombination. Double layer structure. Electron transport layers. Interface energetics. Light illumination. Surface engineering. UV stability. UV-light illumination. Perovskite solar cells. |
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| 4 | مقاله | Efficient, hysteresis-free, and flexible inverted perovskite solar cells using all-vacuum processing.Efficient, hysteresis-free, and flexible inverted perovskite solar cells using all-vacuum processing | Tavakoli, M. M. | Wiley-VCH Verlag, | 2020 |
Copper (II) phthalocyanine.
Efficiencies. Inverted designs. Perovskites. Solar cells. Vacuum deposition. Conversion efficiency. Efficiency. Fabrication. Hysteresis. Perovskite. Perovskite solar cells. Substrates. Copper phthalocyanine (CuPc) Fabrication process. Hole transporting layers. Hysteresis free. Low temperatures. Operational stability. Power conversion efficiencies. Vacuum processing. Copper compounds. |
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| 5 | مقاله | Efficient perovskite solar cells based on Cdse/Zns quantum dots electron transporting layer with superior UV stability | Tavakoli, M. M. | Wiley-VCH Verlag, | 2020 |
CdSe/ZnS quantum dots.
UV stability. Cadmium compounds. Efficiency. II-VI semiconductors. Nanocrystals. Perovskite. Perovskite solar cells. Stability. Titanium dioxide. Device stability. Down-shifting layer. Electron transporting layer. Green emissions. Maximum power. UV illuminations. Semiconductor quantum dots. |
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| 6 | مقاله | Multimaterial topology optimization by volume constrained Allen-Cahn system and regularized projected steepest descent method | Tavakoli, R. | 2014 |
Gradient projection.
MATLAB code. Multiphase Allen-Cahn. Multiphase Cahn-Hilliard. Multiphase topology optimization. Sobolev gradient. Constrained optimization. MATLAB. Allen-Cahn. Gradient projections. Matlab code. Sobolev gradients. Algorithms. |
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| 7 | مقاله | On the prediction of shrinkage defects by thermal criterion functions | Tavakoli, R. | 2014 |
Macroshrinkage defects.
Solidification defects prediction. Forecasting. Numerical methods. Solidification. Thermoanalysis. Casting simulations. Criterion function. Heat transfer equations. Niyama criterion. Numerical results. Shrinkage defects. Solidification defects. Defects. |
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| 8 | مقاله | Computationally efficient approach for the minimization of volume constrained vector-valued Ginzburg-Landau energy functional | Tavakoli, R. | Academic Press Inc, | 2015 |
Barzilai-Borwein stepsize.
Constrained gradient flow. Ginzburg-Landau functional. Nonmonotone gradient flow. Periodic space tessellation. Spinodal decomposition. |
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| 9 | مقاله | Unconditionally energy stable time stepping scheme for Cahn-Morral equation: Application to multi-component spinodal decomposition and optimal space tiling | Tavakoli, R. | Academic Press Inc | 2016 |
Cahn-Hilliard system.
MATLAB code. Multi Phase-field model. Space partitioning. Spinodal decomposition. Unconditionally energy stable. |
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| 10 | مقاله | Optimal design of multiphase composites under elastodynamic loading | Tavakoli, R. | Elsevier, | 2016 |
Adjoint sensitivity analysis.
Multimaterial topology optimization. Optimal design. Regularization. Stress waves. Algorithms. Constrained optimization. Optimal systems. Optimization. Sensitivity analysis. Shape optimization. Topology. Multi materials. Stress wave. Structural design. |
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| 11 | مقاله | On the coupled continuous knapsack problems: projection onto the volume constrained Gibbs N-simplex | Tavakoli, R. | Springer Verlag, | 2016 |
Knapsack problem.
Time-linear algorithm. Algorithms. Combinatorial optimization. Convex optimization. Computational costs. Computational performance. Computational science and engineerings. Knapsack problems. Linear algorithms. Linearly constrained optimization. Numerical experiments. Quadratic knapsack problems. Constrained optimization. |
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| 12 | مقاله | Thermal optimization of the continuous casting process using distributed parameter identification approach—controlling the curvature of solid-liquid interface | Tavakoli, R. | Springer London, | 2018 |
Adjoint sensitivity analysis.
Curvature control. Effective heat capacity. Phase change optimization. Solidification control. Continuous casting. Cooling systems. Curve fitting. Freezing. Heat conduction. Heat transfer. Liquids. Nonlinear equations. Numerical methods. Optimization. Sensitivity analysis. Solidification. Specific heat. Temperature. Thermoelectricity. Distributed parameter identification. Interfacial heat transfer coefficients. Necessary optimality condition. Nonlinear heat-conduction equation. Phase Change. Regularization. Unidirectional solidification. Phase interfaces. |
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| 13 | مقاله | Smooth modeling of solidification based on the latent heat evolution approach | Tavakoli, R. | Springer London, | 2017 |
Effective heat capacity.
Phase change. Continuous casting. Heat conduction. Heat transfer. Latent heat. Solidification. Specific heat. Continuous casting process. Heat conduction equations. Numerical experiments. Phase Change. Regularization. Regularization strategies. Smoothing. Solidification modeling. Problem solving. |
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| 14 | مقاله | CartGen: Robust, efficient and easy to implement uniform/octree/embedded boundary Cartesian grid generator | Tavakoli, R. | 2008 |
Computational fluid dynamics.
Alternative methods. Cartesian grid generation. Cartesian grids. Compression methods. Embedded boundary. Grid generation. Grid levels. Grid sizes. Hierarchical grid. Immersed boundary. Memory overheads. Octree generation. Spatial directions. STL file. Voxelization. Data compression. |
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| 15 | مقاله | Multilayer evaporation of MAFAPbI3-xClx for the fabrication of efficient and large-scale device perovskite solar cells | Tavakoli, M. M. | Institute of Physics Publishing, | 2019 |
Solar.
Solvent-free. Sustainability. Chlorine compounds. Evaporation. Fabrication. Perovskite. Solar cells. Sustainable development. Thermal evaporation. Annealing process. High crystallinity. High-efficiency. Perovskite films. Phase instability. Solvent free. Thermal evaporation technique. Perovskite solar cells. |
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| 16 | مقاله | A Dopant-free hole transporting layer for efficient and stable planar perovskite solar cells | Tavakoli, M. M. | Wiley-VCH Verlag, | 2020 |
Device stability.
Hole transporting layer. Power conversion efficiency. PV2000 polymer. Deposition. Hole mobility. Perovskite. Positive ions. Band alignments. Dopant-free. Hole transporting layers. Maximum power. Operational stability. Organic materials. Polyvinyl pyrrolidone. Spirobifluorene. Perovskite solar cells. |
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| 17 | مقاله | Three-dimensional Graphene Electrode for Depleted-hetreojunction Quantum Dot Solar Cells | Tavakoli, M. M. | Elsevier Ltd, | 2016 |
PbS.
Solar cell. ZnO-graphene. Graphite electrodes. Lead. Nanocrystals. Semiconductor quantum dots. Solar cells. Zinc oxide. 3D graphene. Acidic solutions. Colloidal quantum dots. Hollow structure. Power conversion efficiencies. Quantum dot solar cells. Solution methods. Three-dimensional graphene. Graphene. |
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| 18 | مقاله | Surface engineering of pbs colloidal quantum dots using atomic passivation for photovoltaic applications | Tavakoli, M. M. | Elsevier Ltd | 2016 |
Atomic passivation.
ligand exchange. PbS. Solar cell. Cadmium compounds. Calcium. Doping (additives) Efficiency. Lead. Nanocrystals. Optoelectronic devices. Passivation. Photovoltaic effects. Solar energy. Zinc. Colloidal quantum dots. Ligand exchanges. Low cost fabrication. Pbs colloidal quantum dots. Photoluminescence measurements. Photovoltaic applications. Solar power conversion. Surface engineering. Semiconductor quantum dots. |
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| 19 | مقاله | Trajectory design for cooperative combat missions | Tavakoli Kashi, A. | 2008 |
Military aircraft.
Aircraft dynamics. Combat missions. Hierarchical methods. Military environment. Path planning. Path smoothing. Physical constraints. Trajectory designs. Trajectories. |
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| 20 | مقاله | Oxygen plasma-induced p-type doping improves performance and stability of PbS quantum dot solar cells | Tavakoli Dastjerdi, H. | American Chemical Society, | 2019 |
Plasma.
Stability. Convergence of numerical methods. Costs. Energy gap. IV-VI semiconductors. Lead compounds. Nanocrystals. Oxygen. Plasma applications. Plasma stability. Plasmas. Solar cells. Sols. Sulfur compounds. Colloidal quantum dots. Hole transporting layers. Lead sulfide. Oxygen plasma treatments. Photovoltaic applications. Photovoltaics. Power conversion efficiencies. Quantum dot solar cells. Semiconductor quantum dots. |
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