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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ultrafast FRET in a Room Temperature Ionic Liquid Microemulsion: A Femtosecond Excitation Wavelength Dependence Studyt
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Ultrafast FRET in a Room Temperature Ionic Liquid Microemulsion: A Femtosecond Excitation Wavelength Dependence Studyt

机译:室温离子液体微乳液中的超快FRET:飞秒激发波长依赖性研究

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Fluorescence resonance energy transfer (FRET) from coumarin 480 (C480) to rhodamine 6G (R6G) is studied in a room temperature ionic liquid (RTIL) microemulsion by picosecond and femtosecond emission spectroscopy. The microemulsion is comprised of the RTIL 1-pentyl-3-methylimidazolium tetraflouroborate, [pmim][BF_4], in TX-100/ benzene. We have studied the microemulsion with and without water. The time constants of FRET were obtained from the risetime of the acceptor (R6G) emission. In the RTIL microemulsion, FRET occurs on multiple time scales: 1, 250, and 3900 ps. In water containing RTIL microemulsion, the rise components are 1.5, 250, and 3900 ps. The 1 and 1.5 ps components are assigned to FRET at a close contact of donor and acceptor (R_(DA)Θ 12 _). This occurs within the highly polar (RTIL/water) pool of the microemulsion. With increase in the excitation wavelength λ_(ex)) from 375 to 435 nm, the relative contribution of the ultrafast component of FRET (~1 ps) increases from 4% to 100% in the RTIL microemulsion and 12% to 100% in the water containing RTIL microemulsion. It is suggested that at λ_(ex) = 435 nm, mainly the highly polar RTIL pool is probed where FRET is very fast due to the close proximity of the donor and the acceptor. The very long 3900 ps (R_(DA) Θ 45 _) component may arise from FRET from a donor in the outer periphery of the microemulsion to an acceptor in the polar RTIL pool. The 250 ps component (R_(DA) Θ 29 _) is assigned to FRET from a donor inside the surfactant chains.
机译:在室温离子液体(RTIL)微乳液中,通过皮秒和飞秒发射光谱研究了从香豆素480(C480)到若丹明6G(R6G)的荧光共振能量转移(FRET)。微乳液由TX-100 /苯中的RTIL 1-戊基-3-甲基咪唑四氟硼酸酯[pmim] [BF_4]组成。我们研究了有水和无水的微乳液。从受体(R6G)发射的上升时间获得FRET的时间常数。在RTIL微乳液中,FRET发生在多个时间范围内:1、250和3900 ps。在含有RTIL微乳液的水中,上升分量为1.5、250和3900 ps。 1 ps和1.5 ps分量在施主和受主(R_(DA)Θ12 _)紧密接触时分配给FRET。这发生在微乳液的高极性(RTIL /水)池中。随着激发波长λ_(ex))从375 nm增加到435 nm,FRET超快成分(〜1 ps)的相对贡献在RTIL微乳中从4%增加到100%,在RTIL微乳中从12%增加到100%含RTIL微乳液的水。建议在λ_(ex)= 435 nm处,主要探测高极性RTIL库,其中由于施主和受主的紧密接近,FRET非常快。非常长的3900 ps(R_(DA)Θ45 _)分量可能来自FRET,从微乳液外围的供体到极性RTIL库中的受体。 250 ps分量(R_(DA)Θ29 _)从表面活性剂链内部的供体分配给FRET。

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