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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Photoinduced Electron Transfer from Pyrenes to Alkyl Viologens on the Surface of Polystyrene Latex Particles: Effects of Polarities of the Donors and Charge Densities of the Particles
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Photoinduced Electron Transfer from Pyrenes to Alkyl Viologens on the Surface of Polystyrene Latex Particles: Effects of Polarities of the Donors and Charge Densities of the Particles

机译:聚苯乙烯胶乳颗粒表面上从苯酚到烷基紫精的光诱导电子转移:给体极性和颗粒电荷密度的影响

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摘要

Photoinduced electron transfers (PET) from pyrene (Py), 1-pyrenemethanol (PyM), and 1-Pyrenebutyltrim-ethylammonium bromide (PBTAB) to alkyl viologens, such as methyl viologen (MV~(2+)) and Octyl viologen (OV~(2+)), in polystyrene latex (PSL) aqueous dispersions have been studied by steady-state fluorescence, time-resolved fluorescence, and adsorption/desorption measurements. From steady state fluorescence measurements, it is found that the PET is remarkably enhanced on going from the aqueous homogeneous solution to the latex dispersion. The PET efficiency increases with increasing polarity of the electron donors in the PSL dispersions; PBTAB shows the highest efficiency and Py shows the lowest one. The low PET efficiency of Py in the PSL dispersion is attributed to penetration of Py, as revealed by the I_1/I_3 ratio in the vibronic fine structure of Py fluorescence spectrum. The PET efficiency of PBTAB in PSL dispersion increases with the increase in the charge density of the particle, but decrease with the increase in alkyl-chain length of the quencher. The alkyl viologen with longer alkyl-chain weakens the PET efficiency by desorbing the donors from the latex surface and/or preventing the donors from effective approach with higher steric hindrance effect.
机译:从pyr(Py),1- em甲醇(PyM)和1- P丁基-三甲基-乙基溴化铵(PBTAB)到烷基紫精的光致电子转移(PET)到甲基紫精(MV〜(2+))和辛基紫精(OV) 〜(2+)),已通过稳态荧光,时间分辨荧光和吸附/解吸测量研究了聚苯乙烯胶乳(PSL)中的水分散体。从稳态荧光测量,发现从均相水溶液到乳胶分散体,PET显着增强。 PET效率随着PSL分散体中电子给体极性的增加而增加; PBTAB显示最高效率,Py显示最低效率。 Py在PSL分散液中的低PET效率归因于Py的渗透,如Py荧光光谱的振动细结构中的I_1 / I_3比所揭示的。 PBTAB在PSL分散液中的PET效率随颗粒电荷密度的增加而增加,但随淬灭剂烷基链长度的增加而降低。具有更长烷基链的烷基紫精通过从乳胶表面解吸供体和/或阻止供体采用具有更高空间位阻效应的有效方法来削弱PET效率。

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