Journal Article10.1107/S0021889887087181
Absolute calibration of small‐angle neutron scattering data
George D. Wignall,Frank S. Bates +1 more
726
TL;DR: In this article, a set of precalibrated strongly scattering standards which may be run in the chosen experimental geometry is compared with independent determinations by SANS users to within ± 5%.
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Abstract: Absolute calibration forms a valuable diagnostic tool in small-angle neutron scattering (SANS) experiments, and allows the parameters of a given model to be restricted to the set which reproduces the observed intensity. Discrepancies between the observed and calculated intensities may arise from potential artifacts or even new physical processes and absolute calibration methods are useful in delineating these circumstances. General methods which are available for absolute scaling are discussed along with estimates of the degree of internal consistency which may be achieved between the various standards. In order to minimize the time devoted to calibration in a given experimental program, emphasis is placed on developing a set of precalibrated strongly scattering standards which may be run in the chosen experimental geometry. Comparison of such a set developed at the National Center for Small-Angle Scattering Research (Oak Ridge) with independent determinations by SANS users indicates consistency to within ± 5%.
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Citations
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Emma Vargo,Le Ma,He Li,Qingteng Zhang,Junpyo Kwon,Katherine M Evans,Xiaochen Tang,Victoria L Tovmasyan,Jasmine Jan,A. C. Arias,Hugo Destaillats,Ivan Kuzmenko,Jan Ilavsky,Wei-Ren Chen,William T. Heller,Robert O. Ritchie,Yi Liu,Ting Xu +17 more
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Small-angle neutron scattering from symmetric blends of poly(dimethylsiloxane) and poly(ethylmethylsiloxane)
TL;DR: In this paper, a small-angle neutron scattering (SANS) study of the structure and thermodynamic properties of symmetric blends of deuterated poly(dimethylsiloxane) (d-PDMS) and poly(ethylmethylsiloxanes) (PEMS) as a function of temperature (T ) (40≤ T ≤ 300 ǫ) and the molecular weight (M w ) (4700≤ M w ≤23,200).
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Universal aspects of macromolecules in polymer blends, solutions, and supercritical mixtures
TL;DR: In this article, the authors demonstrate that macromolecules in miscible polymer blends may behave as good, Q, and poor polymeric solvents for each other, and construct a conceptual phase diagram, delineating the range of validity of the random-phase approximation, outside of which polymers contract or expand beyond their unperturbed dimensions.
Sample geometry effects on incoherent small-angle scattering of light water
TL;DR: In this paper, Chen et al. showed that the scattering intensities collected with different ratios of sample-to-beam dimension do present large differences as a function of sample thickness.
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Small-angle neutron scattering study of the mesostructure of bioactive coatings for stone materials based on nanodiamond-modified epoxy siloxane sols
TL;DR: The structure formation of sol-gel-derived epoxy siloxane xerogels with different ratios of the main precursors was investigated using small-angle neutron scattering (SANS) data in this paper.
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References
•Book
Encyclopedia of polymer science and engineering
Herman F. Mark,Jacqueline I. Kroschwitz +1 more
- 01 Jan 1985
TL;DR: In this paper, the authors describe a chain transfer characterisation of polymers charge-transfer complexes, charge transfer complexes and charge transfer complexes of charge transfer and charge-Transfer complexes.
8.1K
•Book
Multicomponent Polymer Materials
Donald R Paul,Leslie H. Sperling +1 more
- 01 Jan 1986
TL;DR: In this article, a new silicone flame-retardant system for thermoplastics, recent developments in interpenetrating polymer networks and related materials, miscibility in random copolymer blends, crystallization and melting in compatible polymer blends, and fatigue in rubber-modified epoxies and other polyblends.
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