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链刚度对混合聚合物刷在选择性溶剂中垂直分离的影响。

Chains Stiffness Effect on the Vertical Segregation of Mixed Polymer Brushes in Selective Solvent.

作者信息

Lukiev Ivan V, Mogelnitskaya Yana A, Mikhailov Ivan V, Darinskii Anatoly A

机构信息

Center for Chemical Engineering, ITMO University, 197101 St. Petersburg, Russia.

Institute of Macromolecular Compounds, Russian Academy of Sciences, 199004 St. Petersburg, Russia.

出版信息

Polymers (Basel). 2023 Jan 27;15(3):644. doi: 10.3390/polym15030644.

Abstract

The microstructure of the binary polymer brushes in the selective solvent was studied using the numerical lattice self-consisting field approach. The case was considered when the selectivity to the solvent (the Flory-Huggins parameter χ) was varied only for one type of chains (responsive chains) while the others (non-responsive chains) remained hydrophilic (χ = 0). In such a brush, with an increase in the hydrophobicity of the responsive chains, a transition occurs between two two-layer microstructures. In the initial state the ends of the longer responsive chains are located near the external surface of the brush and those of non-responsive chains are inside the brush. When the hydrophobicity of the responsive chains becomes high enough then the reversed two-layer microstructure is formed, when the ends of non-responsive chains are located near the brush surface and the responsive chains collapse on the brush bottom. In contrast to previous works, the stiffness parameter (Kuhn segment length ) for one or for both types of chains was varied and its effect on the mechanism and characteristics of the transition was studied. If the stiffness of only responsive chains increases, then the transition occurs with the formation of an intermediate three-layer microstructure, where a layer of responsive chains is located between layers formed by non-responsive ones. If both types of chains have the same , then the transition occurs gradually without the formation of an intermediate three-layer microstructure. For both cases, the effect of on the critical value of χ*, corresponding to the transition point and on the steepness of the transition was investigated.

摘要

采用数值晶格自洽场方法研究了选择性溶剂中二元聚合物刷的微观结构。考虑了这样一种情况:仅对一种类型的链(响应链)改变对溶剂的选择性(弗洛里-哈金斯参数χ),而其他链(非响应链)保持亲水性(χ = 0)。在这样的刷中,随着响应链疏水性的增加,在两种双层微观结构之间会发生转变。在初始状态下,较长响应链的末端位于刷的外表面附近,非响应链的末端位于刷内部。当响应链的疏水性变得足够高时,就会形成相反的双层微观结构,此时非响应链的末端位于刷表面附近,响应链在刷底部塌陷。与之前的工作不同,对一种或两种类型链的刚度参数(库恩链段长度)进行了改变,并研究了其对转变机理和特性的影响。如果仅响应链的刚度增加,那么转变发生时会形成中间三层微观结构;在该结构中,一层响应链位于由非响应链形成的层之间。如果两种类型的链具有相同的刚度参数,那么转变会逐渐发生,不会形成中间三层微观结构。对于这两种情况,都研究了刚度参数对对应于转变点的χ*临界值以及转变陡度的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8dd/9919982/2a2c23efd37b/polymers-15-00644-g001.jpg

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