Functionalized phosphonates as building units for multi-dimensional homo- and heterometallic 3d–4f inorganic–organic hybrid-materials
Author:
Affiliation:
1. Institute of Inorganic and Analytical Chemistry
2. Johannes Gutenberg University Mainz
3. 55128 Mainz
4. Germany
Abstract
Using the multifunctional ligand H4L (2,2′-bipyridinyl-5,5′-diphosphonic acid), a new family of 0D-3D inorganic–organic hybrid-materials was prepared and characterized by single crystal diffraction and magnetic measurements.
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2016/DT/C6DT02023B
Reference54 articles.
1. Mechanical properties of hybrid inorganic–organic framework materials: establishing fundamental structure–property relationships
2. Progress on lanthanide-based organic–inorganic hybrid phosphors
3. Extending the Pore Size of Crystalline Metal Phosphonates toward the Mesoporous Regime by Isoreticular Synthesis
4. New layered copper 1,3,5-benzenetriphosphonates pillared with N-donor ligands: their synthesis, crystal structures, and adsorption properties
5. Solid state coordination chemistry: Structural consequences of varying diphosphonate tether length and fluoride incorporation in the copper–bisterpy/oxomolybdenum/organodiphosphonate system (bisterpy=2,2′:4′,4″:2″,2″′-quarterpyridyl-6′,6″-di-2-pyridine)
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