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Monitoring energy transfer in hyperbranched macromolecules through fluorescence depolarization

机译:通过荧光去极化监测超支化大分子中的能量转移

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Fluorescence depolarization under dipolar quasiresonant energy transfer allows to monitor the presence of the excitation on the originally excited chromophore. Moreover, a simple model relates the arrangement of the chromophores to the depolarization decay via the eigenvalues of the corresponding connectivity matrix. Now, for important classes of polymers (such as dendrimers and fractal hyperbranched macromolecules) these eigenvalues can be obtained without the need of diagonalizing the corresponding connectivity matrices, a fact which allows to study very large systems also. We determine the fluorescence depolarization behavior of hyperbranched systems and emphasize the possibilities offered by such measurements in differentiating between the underlying geometries. (c) 2004 Elsevier B.V. All rights reserved.
机译:在偶极子准共振能量转移下的荧光去极化可以监测最初被激发的生色团上激发的存在。此外,一个简单的模型通过相应的连通性矩阵的特征值将发色团的排列与去极化衰减相关联。现在,对于重要的聚合物类别(例如树枝状聚合物和分形超支化大分子),无需对角化相应的连接矩阵即可获得这些特征值,这一事实也允许研究非常大的系统。我们确定了超支化体系的荧光去极化行为,并强调了在区分基本几何结构时此类测量提供的可能性。 (c)2004 Elsevier B.V.保留所有权利。

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