Synchrotron x-ray and optical studies of the structure of HgSe semiconductor nanoclusters confined in zeolite L and zeolite Y

HgSe semiconductor nanoclusters were fabricated in nearly spherical pores of zeolite Y and one-dimensional (1D) tubular pores of zeolite L. Anomalous x-ray scattering (AXS) data sets were collected on both HgSe/zeolite Y and HgSe/zeolite L systems, together with optical studies (Raman and UV-visible...

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Veröffentlicht in:Physical review. B, Condensed matter Condensed matter, 2008-02, Vol.77 (7), Article 075333
Hauptverfasser: Abeykoon, A. M. M., Castro-Colin, M., Anokhina, E. V., Iliev, M. N., Donner, W., Jacobson, A. J., Moss, S. C.
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Sprache:eng
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Zusammenfassung:HgSe semiconductor nanoclusters were fabricated in nearly spherical pores of zeolite Y and one-dimensional (1D) tubular pores of zeolite L. Anomalous x-ray scattering (AXS) data sets were collected on both HgSe/zeolite Y and HgSe/zeolite L systems, together with optical studies (Raman and UV-visible absorption). Two distinct structural models were determined by performing the Rietveld refinement on AXS data sets. Given the existence of a pronounced diffuse scattering in both filled zeolites and our refined models without the observed diffuse background, for each system, we propose the existence of an average HgSe nanocluster or a 1D nanostructure and the related disorder within the nanocluster which gives off the diffuse scattering. Optical studies were used to complement our x-ray structural work.
ISSN:1098-0121
0163-1829
1550-235X
1095-3795
DOI:10.1103/PhysRevB.77.075333