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An investigation of energy transfer between coumarin 35 and xanthene derivatives in liquid medium

机译:香豆素35与x吨衍生物在液体介质中的能量转移研究

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摘要

The energy transfer between coumarin 35 (C35) and pyronin compounds, which are xanthene derivatives, i.e. pyronin B (PyB) and pyronin Y (PyY), in methanol was investigated at room temperature by using steady-state absorption, emission, and time-resolved fluorescence spectroscopy. Fluorescence energy transfer rate constants (k_T) and critical radius (R0) were determined for C35-PyB and C35-PyY molecular pairs in methanol. The obtained values of k_T and Ro indicated that the dipole-dipole interaction between C35-PyB and C35-PyY molecular pairs accounted for the energy transfer mechanism. The energy transfer efficiency and the distance between the donor and acceptor (r) were also calculated for donor-acceptor pairs using Forster's theory.
机译:通过使用稳态吸收,发射和时间常数,研究了室温下在室温下研究香豆素35(C35)与作为x吨衍生物的吡喃酮化合物即吡喃酮B(PyB)和吡喃酮Y(PyY)之间的能量转移。分辨荧光光谱。确定了甲醇中C35-PyB和C35-PyY分子对的荧光能量转移速率常数(k_T)和临界半径(R0)。获得的k_T和Ro值表明,C35-PyB和C35-PyY分子对之间的偶极-偶极相互作用构成了能量转移机制。能量传递效率和施主与受主之间的距离(r)也使用Forster理论计算了施主与受主之间的距离。

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