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Photophysical Investigation of Similarities between Starburst Dendrimers andAnionic Micelles

机译:星爆树枝状大分子与阴离子胶束相似性的光物理研究

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The dynamics of the electron transfer quenching of photoexcited Ru(phen) 3 2+ bymethyl 3 viologen in solutions containing various anionic micelles and anionic starburst dendrimers were investigated by the single-photon-counting technique by monitoring the Luminescence decay of the excited complex. Analysis of the kinetics Of luminescence quenching revealed that the quenching process in higher generation (G 3. 5 and higher) starburst dendrimer solutions obeys a general kinetic model previously employed for micellar solutions. In these cases the intramicellar or intrastarburst quenching rate constants (kq) were found to be unimolecular and decreased with increasing the size of the host. In the case of lower generation starburst dendrimer (G=2.5 and lower) as with smaller micelles (C 7 and C-8 alkylsodium sulfates), the quenching reaction was found to be bimolecular in nature. This bimolecular quenching is attributed to the rapid exit of the probe from these macromolecules into the aqueous phase during its lifetime. Quenching studies using an anionic quencher such as K4 Fe(CN) 6 substantiates this conclusion. Thus, in spite of the obvious structural differences between aggregates and dendrimer molecules, some striking similarities exist in the electron transfer; micelles; starburst dendrimers luminescence, macromolecules.

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