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层状和圆柱状两亲嵌段共聚物在平面狭缝中的自组装:耗散粒子动力学模拟的见解。

Self-assembly of lamellar- and cylinder-forming diblock copolymers in planar slits: insight from dissipative particle dynamics simulations.

机构信息

Department of Physics, Faculty of Science, J. E. Purkinje University, Ustí n. Lab., Czech Republic.

出版信息

Langmuir. 2010 Sep 21;26(18):14680-93. doi: 10.1021/la102666g.

Abstract

We present a dissipative particle dynamics simulation study on nanostructure formation of symmetric and asymmetric diblock copolymers confined between planar surfaces. We consider symmetric and slightly asymmetric diblock copolymers that form lamellar nanostructures in the bulk, and highly asymmetric diblock copolymers that form cylindrical nanostructures in the bulk. The formation of the diblock copolymer nanostructures confined between the planar surfaces is investigated and characterized by varying the separation width and the strength of the interaction between the surfaces and the diblock copolymers. Both the slit width and the surface interaction strongly influence the phase diagram, especially for the asymmetric systems. For the symmetric and slightly asymmetric diblock copolymer systems, the confinement primarily affects the orientation of the lamellar domains and only marginally influences the domain morphologies. These systems form parallel lamellar phases with different number of lamellae, and perpendicular and mixed lamellar phases. In a narrow portion of the phase diagram, these systems exhibit a parallel perforated lamellar phase, where further insight into the appearance of this phase is provided through free-energy calculations. The confined highly asymmetric diblock copolymer system shows, in addition to nanostructures with parallel and perpendicular cylinders, noncylindrical structures such as parallel lamellae and parallel perforated lamellae. The formation of the various confined nanostructures is further analyzed by calculating structural characteristics such as the mean square end-to-end distance of the diblock copolymers and the nematic order parameter.

摘要

我们提出了一个耗散粒子动力学模拟研究,研究了对称和不对称两亲嵌段共聚物在平面之间受限形成纳米结构的过程。我们考虑了在本体中形成层状纳米结构的对称和略微不对称的两亲嵌段共聚物,以及在本体中形成圆柱状纳米结构的高度不对称的两亲嵌段共聚物。通过改变分离宽度和表面与两亲嵌段共聚物之间的相互作用强度,研究并表征了受限在平面之间的两亲嵌段共聚物纳米结构的形成。狭缝宽度和表面相互作用都强烈影响相图,特别是对于不对称体系。对于对称和略微不对称的两亲嵌段共聚物体系,受限主要影响层状域的取向,仅略微影响域形态。这些体系形成具有不同层片数的平行层状相以及垂直和混合层状相。在相图的一个狭窄部分,这些体系表现出平行穿孔层状相,通过自由能计算进一步深入了解这种相的出现。受限的高度不对称的两亲嵌段共聚物体系除了具有平行和垂直圆柱状纳米结构外,还表现出非圆柱状结构,如平行层状和平行穿孔层状相。通过计算两亲嵌段共聚物的均方末端到末端距离和向列序参数等结构特征,进一步分析了各种受限纳米结构的形成。

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