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首页> 外文期刊>The Journal of Chemical Physics >Temperature dependent free energy surface of polymer folding from equilibrium and quench studies
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Temperature dependent free energy surface of polymer folding from equilibrium and quench studies

机译:通过平衡和猝灭研究,温度随聚合物折叠的自由能表面

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Langevin dynamics simulation studies have been employed to calculate the temperature dependent free energy surface and folding characteristics of a 500 monomer long linear alkane (polyethylene) chain with a realistic interaction potential. Both equilibrium and temperature quench simulation studies have been carried out. Using the shape anisotropy parameter (S) of the folded molecule as the order parameter, we find a weakly first order phase transition between the high-temperature molten globule and low-temperature rodlike crystalline states separated by a small barrier of the order of k B T. Near the melting temperature (580 K), we observe an intriguing intermittent fluctuation with pronounced 1f noise characteristics between these two states with large difference in shape and structure. We have also studied the possibilities of different pathways of folding to states much below the melting point. At 300 K starting from the all-trans linear configuration, the chain folds stepwise into a very regular fourfold crystallite with very high shape anisotropy. Whereas, when quenched from a high temperature (900 K) random coil regime, we identify a two step transition from the random coiled state to a molten globulelike state and, further, to a anisotropic rodlike state. The trajectory reveals an interesting coupling between the two order parameters, namely, radius of gyration (R g) and the shape anisotropy parameter (S). The rodlike final state of the quench trajectory is characterized by lower shape anisotropy parameter and significantly larger number of gauche defects as compared to the final state obtained through equilibrium simulation starting from all-trans linear chain. The quench study shows indication of a nucleationlike pathway from the molten globule to the rodlike state involving an underlying rugged energy landscape.
机译:Langevin动力学仿真研究已被用来计算与温度相关的自由能表面和具有实际相互作用潜能的500个单体长的线性烷烃(聚乙烯)链的折叠特性。已经进行了平衡和温度骤冷模拟研究。使用折叠分子的形状各向异性参数(S)作为阶数参数,我们发现高温熔融小球和低温棒状晶态之间的弱一阶相变被一个k B的小势垒隔开T.在熔化温度(580 K)附近,我们观察到这两种状态之间存在着明显的1f噪声特征,并且在形状和结构上存在很大差异,这是一种令人感兴趣的间歇波动。我们还研究了折叠到低于熔点的状态的不同途径的可能性。从全反式线性构型开始,在300 K时,链逐步折叠成规则的四重微晶,具有很高的形状各向异性。而当从高温(900 K)随机线圈状态淬火时,我们确定了从随机线圈状态到熔融球状状态,再到各向异性棒状状态的两步过渡。轨迹揭示了两个有序参数之间的有趣耦合,即旋转半径(R g)和形状各向异性参数(S)。与通过全反式线性链开始通过平衡模拟获得的最终状态相比,淬灭轨迹的棒状最终状态的特征在于形状各向异性参数较低,并且纱疵的数量明显较多。淬火研究表明,从熔融小球到棒状状态的成核状路径涉及潜在的崎energy不平的能源格局。

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