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首页> 外文期刊>The Journal of Chemical Physics >Diblock copolymer bilayers as model for polymersomes: A coarse grain approach
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Diblock copolymer bilayers as model for polymersomes: A coarse grain approach

机译:二嵌段共聚物双层作为聚合物的模型:粗晶方法

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This paper presents a new model for polymersomes developed using a poly(ethylene oxide)poly(butadiene) diblock copolymer bilayer. The model is based on a coarse-grained approach using the MARTINI force field. Since no MARTINI parameters exist for poly(butadiene), we have refined these parameters using quantum mechanical calculations and molecular dynamics simulations. The model has been validated using extensive molecular dynamics simulations in systems with several hundred polymer units and reaching up to 6 mu s. These simulations show that the copolymer coarse grain model self-assemble into bilayers and that NPT and NPN gamma T ensemble runs reproduce key structural and mechanical experimental properties for different copolymer length chains with a similar hydrophilic weight fraction. Published by AIP Publishing.
机译:本文介绍了使用聚(环氧乙烷)聚(丁二烯)二嵌段共聚物双层开发的聚合物的新模型。 该模型基于使用Martini Force Field的粗粒化方法。 由于不存在Poly(丁二烯)的马提尼参数,因此我们使用量子力学计算和分子动力学模拟来改进这些参数。 该模型已经在具有多百个聚合物单元的系统中使用大量分子动力学模拟验证,可达6亩。 这些模拟表明,共聚物粗晶模型自组装成双层,并且NPT和NPNγtse集团以类似的亲水性重量级分运行不同的共聚物长度链的再现键结构和机械实验性能。 通过AIP发布发布。

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