Three molybdophosphates based on Strandberg-type anions and Zn(ii)-H2biim/H2O subunits: syntheses, structures and catalytic properties
Author:
Affiliation:
1. School of Chemistry and Chemical Engineering
2. Liaoning Normal University
3. Dalian 116029, China
Abstract
Three Zn(ii)-complex-supporting Strandberg-type molybdophosphates have been synthesized, and they represent the first example of Strandberg-type POMs used as catalysts for an organic reaction.
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2014/DT/C3DT53023J
Reference35 articles.
1. Inorganic–organic hybrids constructed from heteropolymolybdate anions and copper–organic fragments: syntheses, structures and properties
2. Two novel diphosphopentamolybdate cluster supported transition metal complexes: (H2bpy)0.5{[Ni(H2O)5][Ni(Hbpy)(H2O)4][Mo5P2O23]} and (H2bpy)0.5{[Co(H2O)5][Co(Hbpy)(H2O)4][Mo5P2O23]}
3. Chiral Self-Threading Frameworks Based on Polyoxometalate Building Blocks Comprising Unprecedented Tri-Flexure Helix
4. Assembly of four copper(II)–2,2′-biimidazole complex-supported Strandberg-type phosphomolybdates
5. Growth of Copper Pyrazole Complex Templated Phosphomolybdates: Supramolecular Interactions Dictate Nucleation of a Crystal
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