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首页> 外文期刊>The Journal of Chemical Physics >A new algorithm for predicting triplet-triplet energy-transfer activated complex coordinate in terms of accurate potential-energy surfaces
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A new algorithm for predicting triplet-triplet energy-transfer activated complex coordinate in terms of accurate potential-energy surfaces

机译:一种根据精确的势能面预测三重态-三重态三重态能量传递激活复合坐标的新算法

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摘要

The new algorithm presented here allows,for the first time,the determination of the optimal geometrical distortions that an acceptor molecule in the triplet-triplet energy-transfer process undergoes,as well as the dependence of the activation energy of the process on the triplet energy difference of donor and acceptor molecules.This algorithm makes use of the complete potential-energy surfaces(singlet and triplet states),and contrasts with the first-order approximation already published [L.M.Frutos,O.Castano,J.L.Andres,M.Merchan,and A.U.Acuna,J.Chem.Phys.120,1208(2004)] in which an expansion of the potential-energy surfaces was used.This algorithm is gradient based and finds the best trajectory for the acceptor molecule,starting from S_0 ground-state equilibrium geometry,to achieve the maximum variation of the singlet-triplet energy gap with the minimum energy of activation on S_0- Therefore,the algorithm allows the determination of a "reaction path" for the triplet-triplet energy-transfer processes.Also,the algorithm could also serve eventually to find minimum-energy crossing(singlet-triplet)points on the potential-energy surface,which can play an important role in the intersystem crossing process for the acceptor molecules to recover their initial capacity as acceptors.Also addressed is the misleading use of minimum-energy paths in T_1 to describe the energy-transfer process by comparing these results with those obtained using the new algorithm.The implementation of the algorithm is illustrated with different potential-energy surface models and it is discussed in the frame of nonvertical behavior.
机译:此处介绍的新算法首次允许确定三重态-三重态能量转移过程中受体分子经历的最佳几何畸变,以及该过程的活化能对三重态能量的依赖性该算法利用了完整的势能表面(单重态和三重态),并与已经发表的一阶近似进行了对比[LMFrutos,O.Castano,JLAndres,M.Merchan,和AUAcuna,J.Chem.Phys.120,1208(2004)],其中使用了势能面的扩展。该算法基于梯度,并从S_0地面开始寻找受体分子的最佳轨迹。状态平衡几何,以最小的激活能量在S_0上实现单重态-三重态能隙的最大变化-因此,该算法允许确定三重态-三重态的能量转移的“反应路径”此外,该算法还可以最终用于在势能表面上找到最小能量交叉点(单重态-三重态),这在系统间交叉过程中可以发挥重要作用,使受体分子恢复其初始容量。通过将这些结果与使用新算法获得的结果进行比较,还解决了在T_1中使用最小能量路径来描述能量转移过程的误导性问题。该算法的实现通过不同的势能表面模型和在非垂直行为的框架中对此进行了讨论。

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