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首页> 外文期刊>The Journal of Chemical Physics >Atomistic molecular dynamics simulation of the temperature and pressure dependences of local and terminal relaxations in cis-1,4-polybutadiene
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Atomistic molecular dynamics simulation of the temperature and pressure dependences of local and terminal relaxations in cis-1,4-polybutadiene

机译:顺式-1,4-聚丁二烯局部和末端弛豫的温度和压力依赖性的原子分子动力学模拟

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The dynamics of cis-1,4-polybutadiene (cis-1,4-PB) over a wide range of temperature and pressure conditions is explored by conducting atomistic molecular dynamics (MD) simulations with a united atom model on a 32-chain C_(128) cis-1,4-PB system.The local or segmental dynamics is analyzed in terms of the dipole moment time autocorrelation function (DACF) of the simulated polymer and its temperature and pressure variations,for temperatures as low as 195 K and pressures as high as 3 kbars.By Fourier transforming the DACF,the dielectric spectrum,epsilon*=epsilon'+i epsilon"= epsilon*(omega),is computed and the normalized epsilon"/epsilon"_(max) vs omega/omega_(max) plot is analyzed on the basis of the time-temperature and time-pressure superposition principles.The relative contribution of thermal energy and volume to the segmental and chain relaxation processes are also calculated and evaluated in terms of the ratio of the activation energy at constant volume to the activation energy at constant pressure, Q_V/Q_P.Additional results for the temperature and pressure dependences of the Rouse times describing terminal relaxation in the two polymers show that,in the regime of the temperature and pressure conditions covered here,segmental and chain relaxations are influenced similarly by the pressure and temperature variations.This is in contrast to what is measured experimentally [see,e.g.,G.Floudas and T.Reisinger,J.Chem.Phys.111,5201 (1999);C.M.Roland et al.J.Polym.Sci.Part B,41,3047 (2003)] for other,chemically more complex polymers that pressure has a stronger influence on the dynamics of segmental mode than on the dynamics of the longest normal mode,at least for the regime of temperature and pressure conditions covered in the present MD simulations.
机译:通过在32链C_上用联合原子模型进行原子分子动力学(MD)模拟,探索了在各种温度和压力条件下cis-1,4-聚丁二烯(cis-1,4-PB)的动力学。 (128)cis-1,4-PB系统。根据模拟聚合物的偶极矩时间自相关函数(DACF)及其温度和压力变化(在温度低至195 K和压力高达3 kbars。通过傅立叶变换DACF,计算介电谱,ε* =ε'+ iε“ =ε*(Ω),并归一化ε” /ε“ _(max)vsΩ/根据时间-温度和时间-压力叠加原理分析omega_(max)图,并根据活化率计算和评估热能和体积对链段和链松弛过程的相对贡献恒定体积的能量到co的活化能常数压力Q_V / Q_P。关于Rouse时间的温度和压力依赖性的其他结果描述了两种聚合物的末端弛豫,结果表明,在本文所述的温度和压力条件下,分段弛豫和链弛豫同样受到这与实验测量的结果相反[参见,例如,G.Floudas和T.Reisinger,J.Chem.Phys.111,5201(1999); CMRoland等人,J.Polym.Sci [B,41,3047(2003)]],对于其他化学性质更复杂的聚合物,至少对于温度和压力条件,压力对分段模式动力学的影响大于对最长正态模式动力学的影响。本MD模拟中介绍了此内容。

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