Chen Kay, Demir Baris
Institute for Nanoscale Science and Technology, Flinders University, Adelaide, SA 5042, Australia.
Centre for Defence Chemistry, Cranfield University, Defence Academy of United Kingdom, Shrivenham SN6 8LA, UK.
Polymers (Basel). 2022 Apr 2;14(7):1451. doi: 10.3390/polym14071451.
Poly(phosphazenes)(PZ) are versatile polymers due to their tunable properties that can be tailored for specific applications. Despite extensive experimental research, not all properties are tested, and the list of PZs studied via molecular simulations is limited. Further, a general procedure to generate and test PZ systems is lacking. We present an in situ polymerization procedure developed to make, test, and tune the thermo-mechanical properties of four PZs-poly(dichlorophosphazene)(PZ-DC), poly[bis(2,2,2-trifluoroethoxy)]phosphazene (PZ-TFE), poly(2,2,2-trifluoroethoxy-5,6-diazidohexanoxy) phosphazene (PZ-Azido), and poly(2,2,2-trifluoroethoxy-5,6-dinitratohexanoxy)phosphazene (PZ-Nitrato) via molecular dynamics simulations. The predicted thermo-mechanical properties (i.e., density and glass transition temperature) agreed with experimental values when a direct comparison of PZ systems was possible. This demonstrates the reproducibility and reliability of our procedure which will help understand the behaviour of PZs at the molecular scale.
聚磷腈(PZ)是一种多功能聚合物,因其具有可调节的性能,能够针对特定应用进行定制。尽管有大量的实验研究,但并非所有性能都经过测试,且通过分子模拟研究的聚磷腈列表有限。此外,目前缺乏一种生成和测试聚磷腈体系的通用程序。我们展示了一种原位聚合程序,该程序通过分子动力学模拟来制备、测试和调节四种聚磷腈——聚(二氯磷腈)(PZ-DC)、聚[双(2,2,2-三氟乙氧基)]磷腈(PZ-TFE)、聚(2,2,2-三氟乙氧基-5,6-二叠氮基己氧基)磷腈(PZ-Azido)和聚(2,2,2-三氟乙氧基-5,6-二硝基己氧基)磷腈(PZ-Nitrato)的热机械性能。当能够对聚磷腈体系进行直接比较时,预测的热机械性能(即密度和玻璃化转变温度)与实验值相符。这证明了我们程序的可重复性和可靠性,这将有助于在分子尺度上理解聚磷腈的行为。