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Triplet Excitation Energy Transfer in Choleic Acid Crystals

机译:杂沙晶体中的三联励磁能量转移

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Time resolved phosphorescence of Dibromobenzophenone (DBBP) choleic acid crystal was observed at 4.2 K as functions of excitation energy and delay time. The experimental results reveal that the energy transfer efficiency is dependent on the excitation energy, i.e. the density of acceptors sites. As the excitation energy or delay time increases, the resonance phosphorescence does not broaden and shift gradually, rather a broad luminescence band develops about 290 cm?1 to lower energy of the resonance phosphorescence. The observation implies that energy transfer from high to low energy sites in this system is controlled by emission of phonons or vibrons. The data of time resolved experiments were analyzed in terms of a mechanism involving direct donor-acceptor excitation transport by exchange coupling. It was concluded that an isotropic twodimensional exchange interaction topology is consistent with energy transfer in this system.
机译:在4.2k中观察到二溴二苯基酮(DBBP)杂苣晶体的时间分辨磷光作为激发能量和延迟时间的函数。实验结果表明,能量转移效率取决于激发能量,即受体位点的密度。随着励磁能量或延迟时间的增加,共振磷光不逐渐扩大和偏移,而是宽发光带产生约290cm·1至较低的共振磷光的能量。观察结果意味着通过声子或纤维的发射来控制从该系统中的高能量位点的能量转移。通过涉及通过交换偶联的直接供体受激励传输的机制来分析时间分辨实验的数据。得出结论,各向同性的两模交换相互作用拓扑与该系统中的能量转移一致。

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