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嵌段共聚物中的交替螺旋体。

Alternating Gyroid in Block Polymer Blends.

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota - Twin Cities, 421 Washington Avenue SE, Minneapolis, Minnesota 55455, United States.

出版信息

ACS Macro Lett. 2022 May 17;11(5):643-650. doi: 10.1021/acsmacrolett.2c00115. Epub 2022 Apr 21.

Abstract

Alternating gyroid is a lower symmetry variant of the double gyroid morphology, where the left-handed and right-handed chiral networks are physically distinct. This structure is of particular interest for photonic applications owing to predictions of a complete photonic band gap subject to the requirement of a large dielectric contrast between the individual networks and sufficient optical matching between one of the networks and the matrix. We provide evidence, via self-consistent field theory (SCFT), that stoichiometric blends of double-gyroid-forming AB and BC diblock copolymers with relatively immiscible A and C blocks should form an alternating gyroid morphology with complementary three-dimensional A and C networks that have a free energy that is nearly degenerate with two phase-separated double gyroid states. Solvent casting offers the potential for trapping this binary mixture of diblock copolymers in this metastable alternating gyroid phase. Theory further predicts that the addition of a minuscule amount (<1%) of ABC triblock terpolymer will open an alternating gyroid stability window in the resulting ternary-phase diagram. The surfactant-like stabilization produced by the triblock is relatively insensitive to its exact composition provided the B-block forms a sufficiently long bridge between the A-rich and C-rich networks. This blending strategy provides significant synthetic and material processing advantages compared to prevailing methods to produce an alternating gyroid phase in block polymers.

摘要

交替向列型是双向列型形态的低对称变体,其中左手和右手手性网络在物理上是不同的。由于预测存在完整的光子带隙,同时要求各网络之间具有较大的介电对比度,以及一个网络与基质之间具有足够的光学匹配,这种结构在光子学应用中具有特殊的意义。我们通过自洽场理论 (SCFT) 提供了证据,表明具有相对不混溶的 A 和 C 嵌段的双向列形成 AB 和 BC 二嵌段共聚物的化学计量比共混物应该形成具有互补三维 A 和 C 网络的交替向列形态,这些网络的自由能与两相分离的双向列态几乎简并。溶剂浇铸有可能将这种二嵌段共聚物的二元混合物捕获在这种亚稳的交替向列相中。理论进一步预测,在所得的三元相图中,添加极少量(<1%)的 ABC 三嵌段共聚物将打开交替向列型稳定性窗口。三嵌段产生的表面活性剂样稳定作用对其精确组成相对不敏感,只要 B 嵌段在富 A 和富 C 网络之间形成足够长的桥。与在嵌段聚合物中产生交替向列相的现有方法相比,这种共混策略在合成和材料加工方面具有显著的优势。

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