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Adsorption of multiblock copolymers onto a chemically heterogeneous surface: A model of pattern recognition

机译:多嵌段共聚物在化学非均相表面上的吸附:模式识别模型

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We present a statistical mechanical model, which is used to investigate the adsorption behavior of two-letter (AB) copolymers On chemically heterogeneous surfaces. The surfaces with regularly distributed stripes of two types (A and B) and periodic multiblock copolymers (A(l)B(l))(x) are studied. It is assumed that A(B)-type segments selectively adsorb onto A(B)-type stripes. It is shown that the adsorption strongly depends on the copolymer sequence distribution and the arrangement of selectively adsorbing regions on the surface. The polymer-surface binding proceeds as a two-step process. At the first step, the copolymer having short blocks adsorbs onto the surface as an effective homopolymer, which does not feel chemical pattern. At the second step, when the polymer-surface attraction is sufficiently strong, the adsorbed chain adjusts its equilibrium conformation to reach the perfect bound state, thereby demonstrating ability for pattern recognition. The key element of this mechanism is the redistribution of strongly adsorbed copolymer diblocks A(l)B(l), which behave as surfactants, between multiple AB interfaces separating A and B stripes on the adsorbing surface. Such redistribution is accompanied by a well-pronounced decrease in the system entropy. We have found that marked pattern recognition is possible for copolymers with relatively short blocks at high polymer/surface affinities, beyond the adsorption threshold. (c) 2005 American Institute of Physics.
机译:我们提供了一个统计力学模型,该模型用于研究两字母(AB)共聚物在化学非均质表面上的吸附行为。研究了具有规则分布的两种(A和B)和周期性多嵌段共聚物(A(l)B(l))(x)条纹的表面。假定A(B)型链段选择性吸附在A(B)型条带上。结果表明,吸附在很大程度上取决于共聚物的序列分布和表面选择性吸附区域的排列。聚合物表面的结合过程分为两个步骤。第一步,具有短嵌段的共聚物以有效的均聚物形式吸附在表面上,不会产生化学图案。在第二步中,当聚合物表面的吸引力足够强时,吸附的链会调整其平衡构象以达到完美的键合状态,从而证明其具有模式识别能力。该机制的关键要素是在表面上将A和B条带分开的多个AB界面之间,作为表面活性剂的强吸附共聚物二嵌段A(l)B(1)的重新分布。这种重新分配伴随着系统熵的明显降低。我们已经发现,对于在较高的聚合物/表面亲和力下具有相对较短的嵌段,超过吸附阈值的共聚物来说,明显的图案识别是可能的。 (c)2005年美国物理研究所。

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