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Updated: Aug 14, 2026

Biochemical and Structural Characterization of the Carbohydrate Transport Substrate-binding-protein SP0092
Published on: October 2, 2017
Structure determination of CdS and ZnS nanoparticles: direct modeling of synchrotron-radiation diffraction data
C Kumpf1, R B Neder, F Niederdraenk
1Lehrstuhl für Experimentelle Physik II, Universität Würzburg, D-97074 Würzburg, Germany. kumpf@physik.uni-wuerzburg.de
Abstract:
We introduce a modified method of powder-diffraction data analysis to obtain precise structural information on freestanding ZnS and CdS nanoparticles with diameters well below 5 nm, i.e., in a range where common bulk-derived approaches fail. The method is based on the Debye equation and allows us to access the crystal structure and the size of the particles with high precision. Detailed information on strain, relaxation effects, stacking faults, and the shape of the particles becomes available. We find significant size differences between our new results and those obtained by established methods, and conclude that a mixed zinc-blende/wurtzite stacking and significant lattice distortions occur in our CdS nanoparticles. Our approach should have direct impact on the understanding and modeling of quantum size effects in nanoparticles.
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