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The excitation energy transfer efficiency between β-Car and Chla molecules in purified CP43 and CP47 was calculated by comparing
absorption and fluorescence excitation after normalization at 550 nm, CP43 had an energy transfer efficiency of 29.1% while
the CP47 had an energy transfer efficiency of 62.8%, proving that excitation energy was transferred between β-Car and Chla
molecules in CP43 and CP47 at normal conditions. The excitation energy transfer between β-Car and Chla molecules in CP43 and
CP47 may occur through the “Dexter” mechanism and the distance between these two kinds of pigments should be less than 1 nm.
In addition, the results were also used to discuss the conformational relationship between β-Car and Chla molecules in CP43
and CP47. 相似文献
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BAO Han ZHANG ChunXi REN YaNan & ZHAO JingQuan Laboratory of Photochemistry Beijing National Laboratory of Molecular Sciences 《科学通报(英文版)》2010,(9)
The secondary electron donor, TyrZ, is implicated in tuning the primary charge separation and the water oxidation in active pho-tosystem II (PSII). Two types of mechanisms have been proposed to explain the function of TyrZ. One is that TyrZ tunes the water oxidation through the direct interaction with substrate water molecules; the other is that TyrZ is located in a hydrophobic envi-ronment without interacting with H2O, and controls the water oxidation by tuning the strength of the hydrogen bond between Tyr... 相似文献