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双嵌段共聚物平衡有序双连续双菱形结构的实空间证据。

Real-space evidence of the equilibrium ordered bicontinuous double diamond structure of a diblock copolymer.

作者信息

Chu C Y, Jiang X, Jinnai H, Pei R Y, Lin W F, Tsai J C, Chen H L

机构信息

Department of Chemical Engineering, Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, Hsin-Chu 30013, Taiwan.

出版信息

Soft Matter. 2015 Mar 14;11(10):1871-6. doi: 10.1039/c4sm02608j.

Abstract

The ordered bicontinuous double diamond (OBDD) structure has long been believed to be an unstable ordered network nanostructure, which is relative to the ordered bicontinuous double gyroid (OBDG) structure for diblock copolymers. Using electron tomography, we present the first real-space observation of the thermodynamically stable OBDD structure in a diblock copolymer composed of a stereoregular block, syndiotactic polypropylene-block-polystyrene (sPP-b-PS), in which the sPP tetrapods are interconnected via a bicontinuous network with Pn3̄m symmetry. The OBDD structure underwent a thermally reversible order-order transition (OOT) to OBDG upon heating, and the transition was accompanied with a slight reduction of domain spacing, as demonstrated both experimentally and theoretically. The thermodynamic stability of the OBDD structure was attributed to the ability of the configurationally regular sPP block to form helical segments, even above its melting point, as the reduction of internal energy associated with the helix formation may effectively compensate the greater packing frustration in OBDD relative to that in the tripods of OBDG.

摘要

长期以来,有序双连续双菱形(OBDD)结构一直被认为是一种不稳定的有序网络纳米结构,这与双嵌段共聚物的有序双连续双螺旋(OBDG)结构有关。通过电子断层扫描,我们首次在由全同立构嵌段、间规聚丙烯-嵌段-聚苯乙烯(sPP-b-PS)组成的双嵌段共聚物中对热力学稳定的OBDD结构进行了实空间观察,其中sPP四足体通过具有Pn3̄m对称性的双连续网络相互连接。加热时,OBDD结构经历了向OBDG的热可逆有序-有序转变(OOT),并且如实验和理论所表明的,该转变伴随着畴间距的轻微减小。OBDD结构的热力学稳定性归因于构型规则的sPP嵌段即使在其熔点以上也能够形成螺旋段,因为与螺旋形成相关的内能降低可以有效地补偿OBDD相对于OBDG三脚架中更大的堆积受挫。

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