Roy Raghunath, Park Jong Keun, Young Wen-Shiue, Mastroianni Sarah E, Tureau Maëva S, Epps Thomas H
Department of Chemical Engineering, University of Delaware, Newark, DE 19716.
Macromolecules. 2011 May 24;44(10):3910-3915. doi: 10.1021/ma1025847.
We report the formation of a double-gyroid network morphology in normal-tapered poly(isoprene-b-isoprene/styrene-b-styrene) [P(I-IS-S)] and inverse-tapered poly(isoprene-b- styrene/isoprene-b-styrene) [P(I-SI-S)] diblock copolymers. Our tapered diblock copolymers with overall poly(styrene) volume fractions of 0.65 (normal-tapered) and 0.67 (inverse-tapered), and tapered regions comprising 30 volume percent of the total polymer, were shown to self-assemble into the double-gyroid network morphology through a combination of small angle X-ray scattering (SAXS) and transmission electron microscopy (TEM). The block copolymers were synthesized by anionic polymerization, where the tapered region between the pure poly(isoprene) and poly(styrene) blocks was generated using a semi-batch feed with programmed syringe pumps. The overall composition of these tapered copolymers lies within the expected network-forming region for conventional poly(isoprene-b-styrene) [P(I-S)] diblock copolymers. Dynamic mechanical analysis (DMA) clearly demonstrated that the order-disorder transition temperatures (T(ODT)'s) of the network-forming tapered block copolymers were depressed when compared to the T(ODT) of their non-tapered counterpart, with the P(I-SI-S) showing the greater drop in T(ODT). These results indicate that it is possible to manipulate the copolymer composition profile between blocks in a diblock copolymer, allowing significant control over the T(ODT), while maintaining the ability to form complex network structures.
我们报道了在正锥形聚(异戊二烯 -b- 异戊二烯/苯乙烯 -b- 苯乙烯)[P(I - IS - S)]和反锥形聚(异戊二烯 -b- 苯乙烯/异戊二烯 -b- 苯乙烯)[P(I - SI - S)]二嵌段共聚物中形成双连续螺旋网络形态。我们的锥形二嵌段共聚物的总聚苯乙烯体积分数为0.65(正锥形)和0.67(反锥形),且锥形区域占总聚合物的30体积百分比,通过小角X射线散射(SAXS)和透射电子显微镜(TEM)相结合的方法表明其自组装成双连续螺旋网络形态。这些嵌段共聚物通过阴离子聚合合成,其中纯聚异戊二烯和聚苯乙烯嵌段之间的锥形区域是使用带有程序控制注射泵的半间歇进料生成的。这些锥形共聚物的总体组成处于传统聚(异戊二烯 -b- 苯乙烯)[P(I - S)]二嵌段共聚物预期的网络形成区域内。动态力学分析(DMA)清楚地表明,与非锥形对应物的有序 - 无序转变温度(T(ODT))相比,形成网络的锥形嵌段共聚物的T(ODT)降低,其中P(I - SI - S)的T(ODT)下降幅度更大。这些结果表明,在二嵌段共聚物中操纵嵌段之间的共聚物组成分布是可能的,这使得在保持形成复杂网络结构能力的同时,能够对T(ODT)进行显著控制。