Characterization Techniques for Nanomaterials
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Characterization Techniques for Nanomaterials
Madhusha, M.L. Chamalki; Munaweera, Imalka
Taylor & Francis Ltd
12/2024
98
Mole
9781032406640
Pré-lançamento - envio 15 a 20 dias após a sua edição
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1. Introduction to Nanomaterial Characterization 2. Chemical and Structural Characterization of Nanomaterials 2.1 Particle morphology and size 2.2 Local structure 2.3 Crystal structure 2.4 Microstructure 3. Parameters of Nanomaterials which should be Characterized 3.1 Morphological features 3.2 Structural defects 3.3 Optical studies 3.4 Structural analysis 3.5 Elemental studies 3.6 Size estimation 3.7 Physicochemical characteristics 3.8 Magnetic properties 4. Chemical Characterization Techniques in Detail 4.1 Optical spectroscopy 4.2 Electron spectroscopy 4.3 Ionic scattering spectroscopy 4.4 Rutherford backscattering spectrometry (RBS) 4.5 Secondary ion mass spectrometry (SIMS) 5. Structural characterization techniques in detail 5.1 X-ray diffraction technique (XRD) 5.2 Electron microscopy 5.3 Dynamic light scattering 5.4 X-ray absorption spectroscopy (XAS) 5.5 The Brunauer-Emmett-Teller (BET) 5.6 Thermal gravimetric analysis (TGA) 5.7 Superconducting quantum interference device magnetometry (SQUID)
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Nanomaterial characterization;Optical Spectroscopy;Electron Spectroscopy;Thermal Gravimetric Analysis;Scanning Tunneling Microscopy;Dynamic Light Scattering;DNA Origami;FTIR Detector;FTIR Testing;Reverse Monte Carlo Simulation;Sample Preparation;FTIR Spectroscopy;FTIR Analysis;Squid Loop;Superparamagnetic Relaxation;ISS;EDS Microanalysis;UV Vis NIR Spectroscopy;Measure IR Spectrum;DTG Curve;Car;IR Light;ZnO NPs;XAS;EDS Data;ETEM;UV Effect;Tunneling Current;Tail Coefficients
1. Introduction to Nanomaterial Characterization 2. Chemical and Structural Characterization of Nanomaterials 2.1 Particle morphology and size 2.2 Local structure 2.3 Crystal structure 2.4 Microstructure 3. Parameters of Nanomaterials which should be Characterized 3.1 Morphological features 3.2 Structural defects 3.3 Optical studies 3.4 Structural analysis 3.5 Elemental studies 3.6 Size estimation 3.7 Physicochemical characteristics 3.8 Magnetic properties 4. Chemical Characterization Techniques in Detail 4.1 Optical spectroscopy 4.2 Electron spectroscopy 4.3 Ionic scattering spectroscopy 4.4 Rutherford backscattering spectrometry (RBS) 4.5 Secondary ion mass spectrometry (SIMS) 5. Structural characterization techniques in detail 5.1 X-ray diffraction technique (XRD) 5.2 Electron microscopy 5.3 Dynamic light scattering 5.4 X-ray absorption spectroscopy (XAS) 5.5 The Brunauer-Emmett-Teller (BET) 5.6 Thermal gravimetric analysis (TGA) 5.7 Superconducting quantum interference device magnetometry (SQUID)
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Nanomaterial characterization;Optical Spectroscopy;Electron Spectroscopy;Thermal Gravimetric Analysis;Scanning Tunneling Microscopy;Dynamic Light Scattering;DNA Origami;FTIR Detector;FTIR Testing;Reverse Monte Carlo Simulation;Sample Preparation;FTIR Spectroscopy;FTIR Analysis;Squid Loop;Superparamagnetic Relaxation;ISS;EDS Microanalysis;UV Vis NIR Spectroscopy;Measure IR Spectrum;DTG Curve;Car;IR Light;ZnO NPs;XAS;EDS Data;ETEM;UV Effect;Tunneling Current;Tail Coefficients