Abstract

Synchrotron radiation experiments were carried out during thein situgrowth of ZnO nanoparticles by the aqueous chemical growth technique. The first results of this exploratoryin situgrazing-incidence diffraction (GID) experiment are reported, with emphasis on the difficulties encountered. In particular, it is shown that, whenin situGID experiments are carried out in a 25 mm-long cell, scattering by the solvent dominates. This impedes the observation of the formation of ZnO nanoparticles during the early stages of the growth process. Nevertheless, it is clearly shown that the wurzite hexagonal structure is present in the solution. At a specific concentration, it is shown how the peak intensities and widths of the Bragg peaks evolve as a function of time.

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