Bismuth-, Tin-, and Lead-Containing Metal-Organic Materials: Synthesis, Structure, Photoluminescence, Second Harmonic Generation, and Ferroelectric Properties
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Doctoral dissertation, University of South Carolina
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Abstract
Metal-Organic Materials (MOMs) contain metal moieties and organic ligands that
combine to form discrete (e.g. metal-organic polyhedra, spheres or nanoballs, metal
organic polygons) or polymeric structures with one-, two-, or three-dimensional
periodicities that can exhibit a variety of properties resulting from the presence of the
metal moieties and/or ligand connectors in the structure. To date, MOMs with a range of
functional attributes have been prepared, including record-breaking porosity, catalytic
properties, molecular magnetism, chemical separations and sensing ability, luminescence
and NLO properties, multiferroic, ferroelectric, and switchable molecular dielectric
properties. We are interested in synthesizing non-centrosymmetric MOM single crystals
possessing one of the ten polar space groups required for non-linear optical properties
(such as second harmonic generation) and ferroelectric applications.
This thesis is divided into two main parts: materials with optical properties, such as
photoluminescence and materials for targeted applications such as second harmonic
generation and ferroelectric properties. This thesis starts with an introduction describing
material having centrosymmetric, non-polar space groups, single crystals structures and
their photoluminescence properties. These crystals exhibit very interesting and rare
structures as well as interesting photoluminescence properties.
Citation
Wibowo, A. C. (2011). Bismuth-, Tin-, and Lead-Containing Metal-Organic Materials: Synthesis, Structure, Photoluminescence, Second Harmonic Generation, and Ferroelectric Properties (Doctoral dissertation, University of South Carolina).
