Supramolecular H-bonded porous networks at surfaces: exploiting primary and secondary interactions in a bi-component melamine-xanthine system

The control over the formation of a bi-component porous network was attained by the self-assembly at a solid-liquid interface by exploiting both primary and secondary non-covalent interactions between melamine and N(3)-alkylated xanthine modules.

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2013-08, Vol.15 (30), p.12442-12446
Hauptverfasser: CIESIELSKI, Artur, HAAR, Sébastien, SAMORI, Paolo, PARAGI, Gábor, KUPIHAR, Zoltán, KELE, Zoltán, MASIERO, Stefano, GUERRA, Célia Fonseca, MATTHIAS BICKELHAUPT, F, SPADA, Gian Piero, KOVACS, Lajos
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container_end_page 12446
container_issue 30
container_start_page 12442
container_title Physical chemistry chemical physics : PCCP
container_volume 15
creator CIESIELSKI, Artur
HAAR, Sébastien
SAMORI, Paolo
PARAGI, Gábor
KUPIHAR, Zoltán
KELE, Zoltán
MASIERO, Stefano
GUERRA, Célia Fonseca
MATTHIAS BICKELHAUPT, F
SPADA, Gian Piero
KOVACS, Lajos
description The control over the formation of a bi-component porous network was attained by the self-assembly at a solid-liquid interface by exploiting both primary and secondary non-covalent interactions between melamine and N(3)-alkylated xanthine modules.
doi_str_mv 10.1039/c3cp50891a
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source Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
subjects Chemistry
Colloidal state and disperse state
Exact sciences and technology
General and physical chemistry
Melamine
Modules
Networks
Physical chemistry
Porous materials
Self assembly
Xanthines
title Supramolecular H-bonded porous networks at surfaces: exploiting primary and secondary interactions in a bi-component melamine-xanthine system
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