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000014191 084__ $$2WoS$$aCrystallography
000014191 1001_ $$0P:(DE-Juel1)VDB96975$$aSchneider, G.J.$$b0$$uFZJ
000014191 245__ $$aA novel model for the interpretation of small-angle scattering experiments of self-affine structures
000014191 260__ $$aCopenhagen$$bMunksgaard$$c2010
000014191 300__ $$a12 - 16
000014191 3367_ $$0PUB:(DE-HGF)16$$2PUB:(DE-HGF)$$aJournal Article
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000014191 440_0 $$03041$$aJournal of Applied Crystallography$$v43$$x0021-8898$$y1
000014191 500__ $$aWe thank S. Vass (KFKI Atomic Energy Research Institute, Budapest, Hungary) and R. Bonart (Universitat Regensburg, Germany) for valuable discussion, S. Cunis and R. Gehrke (HASYLAB at DESY, Hamburg, Germany) for supporting the X-ray experiments, and B. Heise (Universitat Ulm, Germany) for supplying the stretching unit.
000014191 520__ $$aA novel theory is presented which allows, for the first time, the analytical description of small-angle scattering experiments on anisotropic shaped clusters of nanoparticles. Experimentally, silica-filled rubber which is deformed is used as an example. The silica can be modelled by solid spheres which form clusters. The experiments demonstrate that the clusters become anisotropic as a result of the deformation whereas the spheres are not affected. A comparison of the newly derived model function and the experiments provides, for the first time, microscopic evidence of the inhomogeneous deformation of clusters in the rubbery matrix.
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000014191 7001_ $$0P:(DE-HGF)0$$aGöritz, D.$$b1
000014191 773__ $$0PERI:(DE-600)2020879-0$$a10.1107/S0021889809048791$$gVol. 43, p. 12 - 16$$p12 - 16$$q43<12 - 16$$tJournal of applied crystallography$$v43$$x0021-8898$$y2010
000014191 8567_ $$uhttp://dx.doi.org/10.1107/S0021889809048791
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