Effects of Inclusion of (Ferrocenylmethyl)trimethylammonium Complexes in Para-Sulfonated Calixarenes on the Kinetics of Their Electron Transfer Reactions
Author:
Publisher
Walter de Gruyter GmbH
Link
https://www.degruyter.com/document/doi/10.1515/IRM.2006.6.2.161/pdf
Reference36 articles.
1. Crown ether encapsulation effects upon optical electron-transfer energetics in a symmetrical mixed-valence system
2. Solvent-induced and polyether-ligand-induced redox isomerization within an asymmetrically coordinated mixed-valence ion: trans-tetraamminebis(2,2'-bipyridine)(.mu.-4-cyanopyridine)chloro(pyridine)diruthenium(4+), trans-(py)(NH3)4Ru(4-NCpy)Ru(2,2'-bpy)2Cl4+
3. Ruthenium ammine/crown ether interactions in solution: effects of modification of both guest and host on the strength of second-sphere complexation
4. Modulation of Outer-Sphere Electron Transfer Reactivity via Primitive Molecular Recognition Effects: Ru(NH3)5(4-methyl-pyridine)3+/2+ Self-Exchange Kinetics in the Presence of Macrocyclic Polyether Species
5. Electron Self-Exchange Kinetics for a Water-Soluble Ferrocenium/Ferrocene Couple: Rate Modulation via Charge Dependent Calix[6]arene-p-sulfonate Encapsulation
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