Effects of protonation in decavanadates: crystal structure of tetrakis(n-hexylammonium) dihydrogendecavanadate(V)
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/1995/DT/DT9950002225
Reference27 articles.
1. The Molecular Structure of the Isopoly Complex Ion, Decavanadate (V10O286-)
2. Charge distribution in large polyoxoanions: determination of protonation sites in vanadate (V10O286-)by oxygen-17 nuclear magnetic resonance
3. Reinterpretation of five recent crystal structures of heteropoly and isopoly complexes: divanadodecamolybdophosphate, trivanadoenneamolybdophosphate, ".gamma.-dodecatungstophosphate", the dodecamolybdate-dodecamolybdomolybdate blue complex, and dihydrogen decavanadate
4. Where are the protons in H3V10O283-?
5. Protonation sites in the decavanadate ion: X-ray crystal structure of tetrakisadenosinium dihydrodecavanadate(V) undecahydrate
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1. Synthesis, crystal structure and electrochemical properties of a new methylammonium sodium decavanate salt Na3(CH3NH3)3[V10O28].(CH3NH2).14H2O;Journal of Molecular Structure;2022-04
2. Polyoxovanadate-surfactant hybrid layered crystals toward anhydrous proton conductors;Journal of Molecular Structure;2021-02
3. Exploring Wells-Dawson Clusters Associated With the Small Ribosomal Subunit;Frontiers in Chemistry;2019-07-05
4. A one-dimensional supramolecular chain based on [H2V10O28]4− units decorated with 4-dimethylaminopyridinium ions: an experimental and theoretical characterization;New Journal of Chemistry;2019
5. Conductive hybrid crystal composed of polyoxovanadate and deprotonatable ionic-liquid surfactant;Inorganic Chemistry Communications;2018-10
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