Park Jay Hoon, Joo Yong Lak
School of Chemical and Biomolecular Engineering, University Cornell, Ithaca, NY 14853, USA.
Phys Chem Chem Phys. 2014 May 21;16(19):8865-71. doi: 10.1039/c4cp00352g.
We have investigated the effect of nanorods on the symmetry breaking of a model diblock copolymer under cylindrical confinement using coarse-grained molecular dynamics. Unlike nanoparticles, nanorods can readily be interconnected with each other and also induce connection across self-assembly domains at much lower loading than nanoparticles. Such interconnecting nanorods, when incorporated within the nanofiber confined assembled block copolymer, have great potential for providing highly conductive pathways for energy applications, such as battery electrodes and separators. Symmetric block copolymers (BCP) under cylindrical confinement with a nanorod aspect ratio (N) of 1, 5, and 10 are examined with three different types of nanorod-BCP attractions: (a) neutral nanorods, (b) A (wall-attractive phase)-attractive nanorods, and (c) B (wall-repulsive phase)-attractive nanorods. The system was studied with both selective and neutral walls, which affect the orientation of the interconnected nanorod network. Upon close examination of the BCP-nanorod self-assembly, we discovered that the ratio of the interphase distance to the nanorod aspect ratio (I/N) can be correlated to the onset of nanorod interconnectivity and formation of asymmetrical interconnected BCP morphology. By developing a phase diagram with respect to I/N, one can predict the formation of desired BCP morphology and the critical loading of nanorods for connected morphologies in cylindrical confinement.
我们使用粗粒度分子动力学研究了纳米棒对圆柱形受限条件下模型双嵌段共聚物对称性破缺的影响。与纳米颗粒不同,纳米棒能够很容易地相互连接,并且在比纳米颗粒低得多的负载量下就能诱导跨越自组装域的连接。当这种相互连接的纳米棒掺入到纳米纤维受限组装的嵌段共聚物中时,在诸如电池电极和隔膜等能量应用方面,具有提供高导电通路的巨大潜力。研究了圆柱形受限条件下纳米棒长径比(N)为1、5和10的对称嵌段共聚物(BCP),以及三种不同类型的纳米棒 - BCP吸引力:(a)中性纳米棒,(b)A(壁吸引相)吸引的纳米棒,和(c)B(壁排斥相)吸引的纳米棒。该系统采用选择性壁和中性壁进行研究,这会影响相互连接的纳米棒网络的取向。在仔细研究BCP - 纳米棒自组装后,我们发现相间距离与纳米棒长径比的比值(I/N)与纳米棒互连的起始以及不对称互连BCP形态的形成相关。通过绘制关于I/N的相图,可以预测所需BCP形态的形成以及圆柱形受限条件下连接形态的纳米棒临界负载量。