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7
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0344774955
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note
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One possibility is that the lifetime of the quenched component based on the 640 nm emission is not represented on this plot because it is too short. However, on the basis of our experimental limitations, this would imply that the rate of quenching exceeds diffusion control. This would then have also to occur by a static or associated complex mechanism.
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16
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0345205554
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note
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Because of the assumptions inherent in this approach, we estimate the errors in these values to be up to 15%.
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18
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0000566498
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Coates, C. G.; Keyes, T. E.; Hughes, H. P.; Jayaweera, P. M.; McGarvey, J. J.; Vos, J. G. J. Phys. Chem. A 1998, 102, 5013.
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Coates, C.G.1
Keyes, T.E.2
Hughes, H.P.3
Jayaweera, P.M.4
McGarvey, J.J.5
Vos, J.G.6
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21
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0001614288
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Fournier, M.; Thouvenot, R.; Rocchiccioli-Deltcheff, C. J. Chem. Soc., Faraday Trans. 1991, 87, 349.
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Fournier, M.1
Thouvenot, R.2
Rocchiccioli-Deltcheff, C.3
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22
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0344343081
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See Supporting Information
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See Supporting Information.
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23
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0344343080
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note
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2+ dπ to bpy π* transition are not necessarily enhanced here.
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24
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4243128784
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0034684247
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Le Magueres, P.1
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26
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0000813099
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0012291748
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28
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0000975968
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Meyer, T.J.4
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29
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0345637445
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note
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0-0 is the zero-zero spectroscopic energy calculated from the 77 K emission spectrum.
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30
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0034670330
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Bond, A. M.; Vu, T.; Wedd, A. G. J. Electroanal. Chem. 2000, 494, 96.
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Bond, A.M.1
Vu, T.2
Wedd, A.G.3
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31
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0344343079
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Ph.D. Thesis, Monash University, Victoria, Australia
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Vu, T. Ph.D. Thesis, Monash University, Victoria, Australia, 1999.
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(1999)
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Vu, T.1
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