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Intercalation compounds involving inorganic layered structures
CONSTANTINO,VERA R. L.
BARBOSA,CÉSAR A. S.
BIZETO,MARCOS A.
DIAS,PATRÍCIA M.
Location: http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0001-37652000000100006

Two-dimensional inorganic networks can shown intracrystalline reactivity, i.e., simple ions, large species as Keggin ions, organic species, coordination compounds or organometallics can be incorporated in the interlayer region. The host-guest interaction usually causes changes in their chemical, catalytic, electronic and optical properties. The isolation of materials with interesting properties and making use of soft chemistry routes have given rise the possibility of industrial and technological applications of these compounds. We have been using several synthetic approaches to intercalate porphyrins and phthalocyanines into inorganic materials: smectite clays, layered double hydroxides and layered niobates. The isolated materials have been characterized by elemental and thermal analysis, X-ray diffraction, surface area measurements, scanning electronic microscopy, electronic and resonance Raman spectroscopies and EPR. The degree of layer stacking and the charge density of the matrices as well their acid-base nature were considered in our studies on the interaction between the macrocycles and inorganic hosts.

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Intercalation compounds involving inorganic layered structures
Id. 234195
Idioma inglés
Titulo Intercalation compounds involving inorganic layered structures
Autor(es) CONSTANTINO,VERA R. L.
BARBOSA,CÉSAR A. S.
BIZETO,MARCOS A.
DIAS,PATRÍCIA M.
Location http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0001-37652000000100006
Versión 1.0
Estado Final
Descripción Two-dimensional inorganic networks can shown intracrystalline reactivity, i.e., simple ions, large species as Keggin ions, organic species, coordination compounds or organometallics can be incorporated in the interlayer region. The host-guest interaction usually causes changes in their chemical, catalytic, electronic and optical properties. The isolation of materials with interesting properties and making use of soft chemistry routes have given rise the possibility of industrial and technological applications of these compounds. We have been using several synthetic approaches to intercalate porphyrins and phthalocyanines into inorganic materials: smectite clays, layered double hydroxides and layered niobates. The isolated materials have been characterized by elemental and thermal analysis, X-ray diffraction, surface area measurements, scanning electronic microscopy, electronic and resonance Raman spectroscopies and EPR. The degree of layer stacking and the charge density of the matrices as well their acid-base nature were considered in our studies on the interaction between the macrocycles and inorganic hosts.
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Palabras clave intercalation compounds
Tipo de recurso journal article
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Estructura Atomic
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Fecha de contribución 22-may-2005
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