首页> 外文期刊>The Journal of Chemical Physics >Diffusion assisted end-to-end relaxation of a flexible Rouse polymer chain: Fluorescence quenching through a model energy transfer
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Diffusion assisted end-to-end relaxation of a flexible Rouse polymer chain: Fluorescence quenching through a model energy transfer

机译:扩散辅助柔性Rouse聚合物链的端到端松弛:通过模型能量转移的荧光猝灭

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The diffusion-influenced end-to-end conformational relaxation of a flexible polymer chain molecule (within the Rouse model) is investigated theoretically in the Markovian limit utilizing a generalized diffusion equation for the probability distribution of the end-to-end distance of a chain molecule, which has its origin in the Zwanzig's treatment of Onsager's theory of irreversible processes. The end-to-end diffusion dynamics of the chain molecule is considered to be probed by fluorescence resonance energy transfer between two chromophores, attached to the chain ends. The resulting diffusion equation with a sink term representing this energy transfer through a suitably modified Forster rate expression is solved numerically for equilibrium closen/open conformations, and end-to-end irreversible ring opening or closure of the chain. Illustrative calculations and comparisons between the kinetics arising out of these conformations are presented to demonstrate the competitive interplay between the transfer sink strength, diffusion, and chain relaxation. From the numerical results for a variety of transfer parameters and end-to-end diffusion coefficients, it is found that a nonmonotonic distribution of reaction times is a confirmative signature for a cyclization transition, whereas a monotonic decay of distribution of the reaction times, as it always the case with the chain opening transition or with the equilibrium configuration (either closed or opened) of the chain, cannot also be ruled out for the cyclization transition. The knowledge of the distribution of energy-transfer distances is utilized to help delineate the features associated with the reaction time distribution during the end-to-end relaxation.
机译:在马尔可夫极限中,使用广义扩散方程对链的端到端距离的概率分布进行了理论上的研究,研究了柔韧性聚合物链分子(在Rouse模型中)受扩散影响的端到端构象弛豫分子,起源于Zwanzig对Onsager不可逆过程理论的处理。链分子的端到端扩散动力学被认为是通过连接到链端的两个生色团之间的荧光共振能量转移来探测的。对于平衡的闭环/开环构型以及端对端不可逆的环开环或闭环,通过数值求解所得的具有吸收项的扩散方程,该吸收项表示通过适当修改的Forster速率表达式进行的能量传递。这些构象产生的动力学之间的说明性计算和比较被提出来证明转移吸收强度,扩散和链弛豫之间的竞争性相互作用。从各种传递参数和端到端扩散系数的数值结果中,发现反应时间的非单调分布是环化转变的确认标志,而反应时间的分布的单调衰减是:对于链的开放过渡或链的平衡构型(闭合或开放)总是如此,环化过渡也不能排除。利用能量转移距离的分布知识来帮助描绘与端到端松弛期间的反应时间分布相关的特征。

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