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Block Copolymer of Flexible and Semi-Flexible Block Confined in Nanopost Array

机译:限制在纳米柱阵列中的柔性和半柔性嵌段的嵌段共聚物

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摘要

Coarse-grained molecular dynamics simulations of a diblock copolymer consisting of a flexible and semi-flexible block in a dense array of parallel nanoposts with a square lattice packing were performed. The mutual interactions between the two blocks of the confined diblock chain were investigated through a comparison of their size, structure, and penetration among nanoposts with the corresponding separate chains. The geometry of a nanopost array was varied at constant post separation or at constant width of the passage between nanoposts. The size of a single interstitial volume was comparable to or smaller than the size of the diblock chain. A comparison of the blocks with their separate analogous chains revealed that the mutual interactions between the blocks were shielded by the nanoposts and, thus, the blocks behaved independently. At constant passage width, competitive effects of the axial chain extension in interstitial volumes and the lateral chain expansion among interstitial volumes led to a nonmonotonic behavior of the axial span. The position of the maximum in the span plotted against the filling fraction for a diblock chain was dictated by the semi-flexible block. The semi-flexible block penetrates among the nanoposts more readily and the expansion of the whole diblock copolymer is governed by the semiflexible block. The main findings were explained using the free energy arguments when an interstitial volume was approximated by a channel geometry and a passage aperture by a slit geometry. Detail knowledge of controlled conformational behavior in a compartmentalized environment can contribute to new processes in the storage and retrieval of information.
机译:进行了双嵌段共聚物的粗粒分子动力学模拟,该嵌段共聚物由柔性和半柔性嵌段组成,并以正方形晶格堆积的平行纳米柱密集排列。通过比较它们的大小,结构和在具有相应分离链的纳米柱之间的穿透力,研究了封闭的二嵌段链的两个嵌段之间的相互作用。纳米柱阵列的几何形状在恒定的柱间距或恒定的纳米柱之间的通道宽度上变化。单个间隙体积的大小与二嵌段链的大小相当或更小。嵌段与其分离的类似链的比较表明,嵌段之间的相互作用被纳米柱屏蔽,因此,嵌段独立地表现。在恒定的通道宽度下,间隙空间中的轴向链延伸和间隙空间中的侧链膨胀的竞争效应导致轴向跨度的非单调行为。半柔性嵌段决定了二嵌段链相对于填充分数绘制的跨度中最大值的位置。半柔性嵌段更容易渗透到纳米柱之间,并且整个二嵌段共聚物的膨胀由半柔性嵌段控制。主要发现是通过自由能论证来解释的,当间隙体积通过槽的几何形状近似于通道体积且通过缝隙的几何形状近似于通过孔口时。在分隔的环境中控制构象行为的详细知识可有助于信息存储和检索的新过程。

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