Beardsley T M, Matsen M W
Department of Mathematics, University of Reading, RG6 6AX, Whiteknights, Reading, UK.
Eur Phys J E Soft Matter. 2010 Jul;32(3):255-64. doi: 10.1140/epje/i2010-10651-x. Epub 2010 Jul 28.
The phase diagram for diblock copolymer melts is evaluated from lattice-based Monte Carlo simulations using parallel tempering, improving upon earlier simulations that used sequential temperature scans. This new approach locates the order-disorder transition (ODT) far more accurately by the occurrence of a sharp spike in the heat capacity. The present study also performs a more thorough investigation of finite-size effects, which reveals that the gyroid (G) morphology spontaneously forms in place of the perforated-lamellar (PL) phase identified in the earlier study. Nevertheless, there still remains a small region where the PL phase appears to be stable. Interestingly, the lamellar (L) phase next to this region exhibits a small population of transient perforations, which may explain previous scattering experiments suggesting a modulated-lamellar (ML) phase.
通过使用并行回火的基于晶格的蒙特卡罗模拟,评估了二嵌段共聚物熔体的相图,相较于早期使用顺序温度扫描的模拟有了改进。这种新方法通过热容量中尖锐峰值的出现,更精确地定位了有序-无序转变(ODT)。本研究还对有限尺寸效应进行了更全面的研究,结果表明,螺旋状(G)形态会自发形成,取代早期研究中确定的穿孔层状(PL)相。然而,仍有一个小区域,其中PL相似乎是稳定的。有趣的是,该区域旁边的层状(L)相表现出少量的瞬态穿孔,这可能解释了先前暗示调制层状(ML)相的散射实验结果。