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I. Szilágyi Bioinorganic Chemistry Research Group of the Hungarian Academy of Sciences Dóm tér 7 Szeged H-6720 Hungary

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I. Labádi University of Szeged Department of Inorganic and Analytical Chemistry Dóm tér 7 Szeged H-6720 Hungary

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I. Pálinkó University of Szeged Department of Organic Chemistry Dóm tér 8 Szeged H-6720 Hungary

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Various copper(II) complexes as guests were immobilised among the layers of montmorillonite or on silica gel as hosts. Anchoring took place through hydrogen bonds and ion exchange for montmorillonite, while the forces of interaction were either hydrogen bonding or covalent bonds for the copper complex-silica gel nanohybrids. The thermal stabilities of these substances were studied under oxidizing atmosphere and it was found that anchoring increased the durability of the host-guest complexes relative to the host-free ones.

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Editor-in-Chief: Kukovecz Ákos (SZTE)

Editor-in-Chief: Kónya Zoltán (SZTE)

 

Nanopages
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Nanopages
Language English
Size B5
Year of
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2006
Volumes
per Year
1
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per Year
1
Founder Akadémiai Kiadó
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H-1117 Budapest, Hungary 1516 Budapest, PO Box 245.
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Chief Executive Officer, Akadémiai Kiadó
ISSN 1787-4033 (Print)
ISSN 1788-0718 (Online)

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