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Experimental solid state physics --- Optics. Quantum optics --- Biological microscopy --- Scanning probe microscopy --- Tunneling spectroscopy --- 531.728 --- 537.533.35 --- 57.086.3 --- 543.42 --- 543.08 --- Scanned probe microscopy --- Scanning electron microscopy --- Spectroscopy, Tunneling --- Spectrum analysis --- Tunneling (Physics) --- Surface measurement using microscope --- Electron microscopy --- Electron microscopy techniques --- Spectrum analysis. Spectroscopy. Spectrography. Spectrometry. Spectrophotometry. Fluorescence analysis --- Analytical measurement --- 543.08 Analytical measurement --- 543.42 Spectrum analysis. Spectroscopy. Spectrography. Spectrometry. Spectrophotometry. Fluorescence analysis --- 57.086.3 Electron microscopy techniques --- 537.533.35 Electron microscopy --- 531.728 Surface measurement using microscope
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Experimental solid state physics --- Optics. Quantum optics --- Scanning tunneling microscopy --- Tunneling spectroscopy --- Microscopie à effet tunnel --- 531.728 --- 537.533.35 --- #WSCH:MODS --- Spectroscopy, Tunneling --- Spectrum analysis --- Tunneling (Physics) --- STM (Microscopy) --- Scanning probe microscopy --- Surface measurement using microscope --- Electron microscopy --- Scanning tunneling microscopy. --- Tunneling spectroscopy. --- 537.533.35 Electron microscopy --- 531.728 Surface measurement using microscope --- Microscopie à effet tunnel --- Electrochemistry. --- Interface --- Scanning electron microscopy --- Surface (chemistry and physics) --- Tunneling
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Solid state physics --- Ceramic materials --- Nitrides --- Silicon nitride --- Matériaux céramiques --- Nitrures --- Nitrure de silicium --- Matériaux céramiques
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Efficiency and life time of solar cells, energy and power density of the batteries, and costs of the fuel cells alike cannot be improved unless the complex electronic, optoelectronic, and ionic mechanisms underpinning operation of these materials and devices are understood on the nanometer level of individual defects. Only by probing these phenomena locally can we hope to link materials structure and functionality, thus opening pathway for predictive modeling and synthesis. While structures of these materials are now accessible on length scales from macroscopic to atomic, their functionality h
Electric batteries --- Scanning probe microscopy --- Scanned probe microscopy --- Scanning electron microscopy --- Batteries, Electric --- Batteries (Electricity) --- Cell, Voltaic --- Electrical batteries --- Electrochemical cells --- Galvanic batteries --- Voltaic cell --- Electric power supplies to apparatus --- Electrochemistry --- Thermopiles --- Research. --- Industrial applications.
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