Galoppini, Elena et al. published their research in Journal of the American Chemical Society in 2002 |CAS: 144970-30-9

The Article related to electron transfer across mol nanocrystalline semiconductor interface tripodal photosensitizer, safety photoinduced electron transfer titania tripodal ruthenium complex sensitizer, zirconia tripodal ruthenium complex sensitizer interfacial photoinduced electron transfer and other aspects.Recommanded Product: 144970-30-9

On July 3, 2002, Galoppini, Elena; Guo, Wenzhuo; Zhang, Wei; Hoertz, Paul G.; Qu, Ping; Meyer, Gerald J. published an article.Recommanded Product: 144970-30-9 The title of the article was Long-range electron transfer across molecule-nanocrystalline semiconductor interfaces using tripodal sensitizers. And the article contained the following:

Four tripodal sensitizers, Ru(bpy)2(Ad-tripod-phen)2+ (1), Ru(bpy)2(Ad-tripod-bpy)2+ (2), Ru(bpy)2(C-tripod-phen)2+ (3), and Ru(bpy)2(C-tripod-bpy)2+ (4) (bpy = 2,2′-bipyridine; phen = 1,10-phenanthroline; Ad-tripod-bpy (phen) and C-tripod-bpy (phen) = tripod-shaped bpy (phen) ligands based on 1,3,5,7-tetraphenyladamantane and tetraphenylmethane, resp.), have been synthesized and characterized. The tripodal sensitizers consist of a rigid-rod arm linked to a RuII-polypyridine complex at one end and three COOR groups on the other end that bind to metal oxide nanoparticle surfaces. The excited-state and redox properties of solvated and surface-bound 1-4 have been studied at room temperature The absorption spectra, emission spectra, and electrochem. properties of 1-4 in acetonitrile solution are preserved when 1-4 are bound to nanocrystalline (anatase) TiO2 or colloidal ZrO2 mesoporous films. This behavior is indicative of weak electronic coupling between TiO2 and the sensitizer. The kinetics for excited-state decay are exponential for 1-4 in solution and are nonexponential when 1-4 are bound to ZrO2 or TiO2. Efficient and rapid (kcs > 108 s-1) excited-state electron injection is observed for 1-4/TiO2. The recombination of the injected electron with the oxidized RuIII center is well described by a second-order kinetic model with rate constants that are independent of the sensitizer. The sensitizers bound to TiO2 were reversibly oxidized electrochem. with an apparent diffusion coefficient ∼1 × 10-11 cm2-s-1. Caution preparation of diazomethane (in synthesis of reactant for preparation tripodal ligand) was done in special glassware with smooth joints following safety precautions. The experimental process involved the reaction of 1,3,5,7-Tetrakis(4-iodophenyl)adamantane(cas: 144970-30-9).Recommanded Product: 144970-30-9

The Article related to electron transfer across mol nanocrystalline semiconductor interface tripodal photosensitizer, safety photoinduced electron transfer titania tripodal ruthenium complex sensitizer, zirconia tripodal ruthenium complex sensitizer interfacial photoinduced electron transfer and other aspects.Recommanded Product: 144970-30-9

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com