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- W2891593243 abstract "Charge transfer (CT) states play a key role in the operation of organic solar cells, yet little is known about their energetic distribution under illumination. By measuring a dynamic redshift in the faint photoluminescence of CT states over time, the authors characterize relaxation within the CT density of states, and show that this process is generally $iphantom{rule{0}{0ex}}nphantom{rule{0}{0ex}}cphantom{rule{0}{0ex}}ophantom{rule{0}{0ex}}mphantom{rule{0}{0ex}}pphantom{rule{0}{0ex}}lphantom{rule{0}{0ex}}ephantom{rule{0}{0ex}}tphantom{rule{0}{0ex}}e$ under normal operating conditions. The result is a nonthermal distribution of CT states, characterized by an elevated effective temperature, which overturns a basic assumption implicit in most models of organic solar cells to date." @default.
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- W2891593243 date "2018-09-18" @default.
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- W2891593243 title "Nonthermal Site Occupation at the Donor-Acceptor Interface of Organic Solar Cells" @default.
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- W2891593243 doi "https://doi.org/10.1103/physrevapplied.10.034034" @default.
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