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β-Cyclodextrin Encapsulated Coumarin 6 on Graphene Oxide Nanosheets: Impact on Ground-State Electron Transfer and Excited-State Energy Transfer

机译:氧化石墨烯纳米片上β-环糊精包封的香豆素6:对基态电子转移和激发态能量转移的影响

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We report a unique phenomenon of physical adsorption of coumarin 6-β-cyclodextrin (C6-β-CD) inclusion nanostructures on graphene oxide (GO) nanosheets, thus inducing ground-state electron transfer from the C6-β-CD composite to GO. On excitation, the C6-β-CD composite initially transfers energy to the attached GO surface and subsequently collides with similar C6-β[email?protected] adducts leading to dynamic quenching of energy. The ground-state two-electron transfer process has been confirmed by cyclic voltammetry in aqueous medium, whereas the excited-state processes were inferred from steady-state and time-resolved fluorescence spectroscopy. The concept is developed toward conceiving control over the ground-state electron transfer and excited state energy transfer from the C6-β-CD composite by the adsorbed electron accepting medium (GO in this case). The C6-β-CD composite has been prepared to isolate single C6 molecules that readily undergo microcrystal formation in aqueous medium. The results show its potential toward fabrication of energy-harvesting antenna for further applications.
机译:我们报告了在氧化石墨烯(GO)纳米片上香豆素6-β-环糊精(C6-β-CD)包含纳米结构的物理吸附的独特现象,从而诱导了从C6-β-CD复合材料到GO的基态电子转移。在激发时,C6-β-CD复合材料首先将能量转移到附着的GO表面,然后与相似的C6-β[e-mailprotected]加合物碰撞,导致能量动态猝灭。基态两电子转移过程已通过循环伏安法在水性介质中得到证实,而激发态过程则是从稳态和时间分辨荧光光谱学推断出来的。该概念的发展方向是设想通过吸附的电子接受介质(在这种情况下为GO)控制从C6-β-CD复合材料的基态电子转移和激发态能量转移。已经制备了C6-β-CD复合物以分离在水性介质中容易经历微晶形成的单个C6分子。结果显示了其在制造能量收集天线以用于进一步应用方面的潜力。

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