4.7 Article

Photoinduced four- and six-electron reduction of mononuclear ruthenium complexes having NAD(+) analogous ligands

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DALTON TRANSACTIONS
卷 39, 期 48, 页码 11526-11534

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c0dt00504e

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  1. Ministry of Education, Culture, Sports, Science and Technology of Japan (MEXT) [20002005]

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The ruthenium complexes [Ru(bpy)(pbn)(2)](PF6)(2) ([2](2+); bpy = 2,2'-bipyridine, pbn = 2-(2-pyridyl)benzo[b]-1,5-naphthyridine) and [Ru(pbn)(3)](PF6)(2) ([3](2+)) were synthesized. Photoirradiation (lambda > 420 nm) of [2](2+) and [3](2+) in CH3CN/triethanolamine (TEOA) brought about proton coupled four-and six-electron reduction of the complexes to produce [Ru(bpy)(pbnH(2))(2)](PF6)(2) ([2.H-4](2+); pbnH(2) = 5,10-dihydro-2-(2-pyridyl)benzo[b]-1,5-naphthyridine) and [Ru(pbnH(2))(3)](PF6)(2) ([3.H-6](2+)), respectively. The photoexcited [Ru-III(bpy)(pbn(center dot-))(pbnH(2))](2+) intermediate is quenched by intermolecular electron transfer from TEOA to Ru-III, while intramolecular transfer from pbnH(2) to Ru-III is negligible. As a result, novel photochemical four-and six-electron reduction of [2](2+) and [3](2+) is achieved through repetition of the two-electron reduction of the Ru-pbn group. The high efficiency photochemical two-, four- and six-electron reductions of [Ru(bpy)(2)(pbn)](2+) ([1](2+)), [2](2+) and [3](2+), respectively, by taking advantage of proton coupled two electron reduction of NAD(+) analogous type ligands such as pbn opens a general pathway for multi-electron reduction of metal complexes via illumination with visible light.

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