Bernabei Marco, Moreno Angel J, Colmenero Juan
Donostia International Physics Center, Paseo Manuel de Lardizabal 4, 20018 San Sebastián, Spain.
Phys Rev Lett. 2008 Dec 19;101(25):255701. doi: 10.1103/PhysRevLett.101.255701. Epub 2008 Dec 15.
We present molecular dynamics simulations of a simple model for polymer melts with intramolecular barriers. We investigate structural relaxation as a function of the barrier strength. Dynamic correlators can be consistently analyzed within the framework of the mode coupling theory of the glass transition. Control parameters are tuned in order to induce a competition between general packing effects and polymer-specific intramolecular barriers as mechanisms for dynamic arrest. This competition yields unusually large values of the so-called mode coupling theory exponent parameter and rationalizes qualitatively different observations for simple bead-spring and realistic polymers. The systematic study of the effect of intramolecular barriers presented here also establishes a fundamental difference between the nature of the glass transition in polymers and in simple glass formers.
我们展示了具有分子内势垒的聚合物熔体简单模型的分子动力学模拟。我们研究了作为势垒强度函数的结构弛豫。动态关联函数可以在玻璃化转变的模式耦合理论框架内进行一致分析。调整控制参数以引发一般堆积效应与聚合物特定分子内势垒之间的竞争,作为动态阻滞的机制。这种竞争产生了所谓模式耦合理论指数参数的异常大值,并定性地解释了简单珠簧聚合物和实际聚合物的不同观测结果。本文对分子内势垒效应的系统研究也揭示了聚合物与简单玻璃形成体中玻璃化转变本质的根本差异。