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Qiu, Canrong; Schmidt, Moritz; Stubbs, J.E.; Eng, P.J.
Annual report 2016. Institute of Resource Ecology2017
Annual report 2016. Institute of Resource Ecology2017
AbstractAbstract
[en] The formation of Zr(IV) oxo-hydroxide nanoparticles on the muscovite (001) surface was investigated as a function of ionic strength (NaCl) using X-ray surface diffraction techniques. The best fit model revealed a structural ordering of Zr nanoparticles that extends up to ∝ 3 nm above substrate surface and increases with NaCl concentrations. We propose a plausible mechanism to explain the Zr nanoparticle aggregation process.
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Stumpf, Thorsten (Helmholtz-Zentrum Dresden-Rossendorf e.V., Dresden (Germany). Inst. of Resource Ecology); Foerstendorf, Harald; Bok, Frank; Richter, Anke (Helmholtz-Zentrum Dresden-Rossendorf e.V., Dresden (Germany). Surface Processes) (eds.); Helmholtz-Zentrum Dresden-Rossendorf e.V., Dresden (Germany). Inst. of Resource Ecology; 103 p; ISSN 2191-8708;
; 2017; p. 35

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Report
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ALKALI METAL COMPOUNDS, CHLORIDES, CHLORINE COMPOUNDS, COHERENT SCATTERING, DIFFRACTION, HALIDES, HALOGEN COMPOUNDS, HYDROGEN COMPOUNDS, HYDROXIDES, MICA, MINERALS, OXYGEN COMPOUNDS, PARTICLES, SCATTERING, SILICATE MINERALS, SODIUM COMPOUNDS, SODIUM HALIDES, TRANSITION ELEMENT COMPOUNDS, ZIRCONIUM COMPOUNDS
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