Aims and Scope
Focus and scope
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Amorphous oxide semiconductors: Electron transport properties, Single-crystalline semiconductor technology, Active-matrix liquid crystal display, Oxide electronics, Disordered network of distorted MOx, Tunable electrical conductivity, Density of subgap state (DOS) models, Heavy Metals, Band gap and Hall voltage.
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Photovoltaics: Solar cell, Crystalline Silicon, Electricity, Ionization, Atomic bonds, Photoelectric effect, Modules, Single Junction, Direct Current, and Solar Spectrum.
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Advanced materials for CMOS: Semiconductor fabrication technologies, P&N-type Transistors, Polymer films, Integrated Circuit, Analog Circuits, Metal-oxide-semiconductor, Electric Field Scaling, Silicon dioxide (SiO2) gate, Equivalent oxide thickness, and Polysilicon.
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Novel devices: Chemical energy, Nano-sized objects, Quantum Devices, Biosensors, Nanofabrication, Graphene, Nanowires, Field-effect transistor, Self-assembled monolayers, and DenOvo Pathway.
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Thin films: Physical vapor deposition (PVD), Chemical vapor deposition, Sensors, layers of thickness in nanometer, Bulk Substrate, Surface Interaction, TiN coatings, Adsorption, Nucleation, and Thermal Stress.
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Crystal structure: Crystalline materials, Atoms, Bravais lattice, Unit cell, X-ray, Electron Density, Miller Indices, Crystal directions, Packed Structures, and Planes.
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Quasicrystals: 3-D atomic arrangement, Electron diffraction patterns, Icosahedral Quasicrystals, Polygonal Quasicrystals, Ternary metallic alloys, Higher-dimensional crystallography, Stability of quasicrystals, Non-periodic, Lacks translational symmetry and aluminum-manganese alloys.
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Spin glasses: Condensed matter, Magnetic State, Transition Temperature, Glassy system, Equilibrium state, Magnetic alloys, ferromagnetic bonds, antiferromagnetic bonds, Freezing of spins, and Energy Barriers.
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High-temperature superconductivity: Superconductors at temperatures above 77 K, Liquid Nitrogen, Cryogenics, Ceramics, Crystal structures Cu and O atoms, Zero resistance, Strong diamagnetism, Magnetic resonance, Cuprates, and Type II Semiconductor.
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