Shahidi Nobahar, Laub Jeffrey A, Vogiatzis Konstantinos D, Doxastakis Manolis
Department of Chemical and Biomolecular Engineering, University of Tennessee, Knoxville, TN 37996, USA.
Department of Chemistry, University of Tennessee, Knoxville, TN 37996, USA.
Polymers (Basel). 2024 Aug 7;16(16):2243. doi: 10.3390/polym16162243.
Vinyl-addition polynorbornenes are candidates for designing high-performance polymers due to unique characteristics, which include a high glass transition temperature associated with a rigid backbone. Recent studies have established that the processability and properties of these polymers can be fine-tuned by using targeted substitutions. However, synthesis with different catalysts results in materials with distinct properties, potentially due to the presence of various stereoisomers that are difficult to quantify experimentally. Herein, we develop all-atom models of polynorbornene oligomers based on classical force fields and density functional theory. To establish the relationship between chemical architecture, chain conformations, and melt structure, we perform detailed molecular dynamics simulations with the fine-tuned atomistic force field and propose simpler coarse-grained descriptions to address the high molecular weight limit. All-atom simulations of oligomers suggest high glass transition temperatures in the range of 550-600 K. In the melt state (800 K), meso chains form highly rigid extended coils (C∞≈11) with amorphous structural characteristics similar to the X-ray diffraction data observed in the literature. In contrast, simulations with racemo chains predict highly helical tubular chain conformations that could promote assembly into crystalline structures.
乙烯基加成聚降冰片烯因其独特的特性,包括与刚性主链相关的高玻璃化转变温度,而成为设计高性能聚合物的候选材料。最近的研究表明,通过使用有针对性的取代,可以对这些聚合物的加工性能和性能进行微调。然而,使用不同的催化剂进行合成会导致材料具有不同的性能,这可能是由于存在各种难以通过实验定量的立体异构体。在此,我们基于经典力场和密度泛函理论开发了聚降冰片烯低聚物的全原子模型。为了建立化学结构、链构象和熔体结构之间的关系,我们使用经过微调的原子力场进行了详细的分子动力学模拟,并提出了更简单的粗粒度描述来解决高分子量极限问题。低聚物的全原子模拟表明玻璃化转变温度在550-600K范围内。在熔体状态(800K)下,内消旋链形成高度刚性的伸展线圈(C∞≈11),其非晶结构特征与文献中观察到的X射线衍射数据相似。相比之下,外消旋链的模拟预测了高度螺旋的管状链构象,这可能促进组装成晶体结构。