Recent Advances in Small-Angle Neutron Scattering
Over the decades, small-angle neutron scattering has became a definitive method for structural investigation on the mesoscale between a few Angstrom up to a few 100 nm. This makes it an indispensable tool for non-destructive material investigations in fields ranging from chemistry and biology, over...
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Format | eBook |
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Language | English |
Published |
Basel
MDPI - Multidisciplinary Digital Publishing Institute
2022
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Subjects | |
Online Access | Get full text |
ISBN | 9783036537290 9783036537306 3036537295 3036537309 |
DOI | 10.3390/books978-3-0365-3730-6 |
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Abstract | Over the decades, small-angle neutron scattering has became a definitive method for structural investigation on the mesoscale between a few Angstrom up to a few 100 nm. This makes it an indispensable tool for non-destructive material investigations in fields ranging from chemistry and biology, over material sciences to solid state physics, especially taking into account the fundamental nature of neutrons, which makes it possible to probe different isotopes and, therefore, enhance contrast by choosing an appropriate isotope distribution or to probe the spin state of the investigated materials. This Special Issue is dedicated to elucidate the advances made with SANS over the last few years, which includes new instrumentation, sample environment and experimental control, as well as novel approaches and experimental techniques. The ideas and approaches collected here will serve both the experienced experimenter as well as the novice to appraise whether their specific experimental setup is feasible with new ideas. |
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AbstractList | Over the decades, small-angle neutron scattering has became a definitive method for structural investigation on the mesoscale between a few Angstrom up to a few 100 nm. This makes it an indispensable tool for non-destructive material investigations in fields ranging from chemistry and biology, over material sciences to solid state physics, especially taking into account the fundamental nature of neutrons, which makes it possible to probe different isotopes and, therefore, enhance contrast by choosing an appropriate isotope distribution or to probe the spin state of the investigated materials. This Special Issue is dedicated to elucidate the advances made with SANS over the last few years, which includes new instrumentation, sample environment and experimental control, as well as novel approaches and experimental techniques. The ideas and approaches collected here will serve both the experienced experimenter as well as the novice to appraise whether their specific experimental setup is feasible with new ideas. |
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SubjectTerms | 3D printed BornAgain Software colloidal monolayers colloidal superballs data acquisition DLS dynamic light scattering ESS European Spallation Source foams form factor FTIR GISANS grazing incidence scattering GUI humidity chamber hysteresis instrument control instrumentation magnetoactive elastomer magnetorheological elastomer Mathematics and Science microgels n/a nanomaterials neutron scattering proteins in buffer solution Reference, Information and Interdisciplinary subjects Research and information: general restructuring of the filler sample environment sample environments SANS SAS SAXS scattering semi-crystalline polymers simulation SKADI small angle neutron scattering small angle X-ray scattering soft matter thin films time-resolved ultra-small-angle neutron scattering user facility |
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Title | Recent Advances in Small-Angle Neutron Scattering |
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