4.6 Article

Excited-state dynamics of heteroleptic copper(i) photosensitizers and their electrochemically reduced forms containing a dipyridophenazine moiety - a spectroelectrochemical transient absorption study

期刊

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 21, 期 20, 页码 10716-10725

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c9cp00412b

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资金

  1. German Science Foundation (DFG) [DI1517/11-1]
  2. University of Stuttgart
  3. Chemical Industry Fund (FCI)
  4. German Academic Exchange Service (DAAD)

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The electrochemically singly-reduced Cu(i) photosensitizers of the type [Cu(xant)(N boolean AND N)](+) (with xant = xantphos ligand and N boolean AND N = bidentate diimine ligand: dipyrido[3,2-a:2 ',3 '-c]phenazine = dppz or 3,6,11,12-tetramethyl-dipyrido[3,2-a:2 ',3 '-c]phenazine = tmdppz) exhibit a metal-to-ligand charge transfer (MLCT) transition from the Cu(I) center to the reduced dppz(-) ligand. This special behavior makes them promising candidates for two-electron accumulation. Consequently, the photoinduced excited-state processes of [Cu(xant)(dppz)](+) (1) and [Cu(xant)(tmdppz)](+) (2) were investigated in solution by femtosecond transient absorption spectroelectrochemistry. Furthermore, the influence of the methyl substitution at the dppz ligand on the transient dynamics was revealed. Moreover, both singly-reduced species 1(-) and 2(-) possess short-lived excited states (10-20 ps) when excited into the MLCTphen or the low-lying states, representing an obstacle for the possible two-electron photoaccumulation.

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