Jaramillo-Cano Diego, Camargo Manuel, Likos Christos N, Gârlea Ioana C
Faculty of Physics, University of Vienna, Boltzmanngasse 5, 1090 Vienna, Austria.
CICBA & FIMEB, Universidad Antonio Nariño, 760030 Cali, Colombia.
Macromolecules. 2020 Nov 24;53(22):10015-10027. doi: 10.1021/acs.macromol.0c01365. Epub 2020 Nov 12.
Block copolymer stars (BCSs) have been demonstrated to constitute versatile, self-assembling building blocks with tunable softness, functionalization, and shape. We investigate the dynamical properties of suspensions of short-arm BCSs under linear shear flow by means of extensive particle-based multiscale simulations. We determine the properties of the system for representative values of monomer packing fraction ranging from semidilute to concentrate regimes. We systematically analyze the formed network structures as a function of both shear rate and packing fraction, the reorganization of solvophobic patches, and the corresponding radial correlation functions. Connecting our findings with rheology, we calculate the viscosity as a function of shear rate and discuss the implications of the found shear thinning behavior.
嵌段共聚物星型聚合物(BCSs)已被证明是构成具有可调软度、功能化和形状的多功能自组装结构单元。我们通过广泛的基于粒子的多尺度模拟,研究了短臂BCSs悬浮液在线性剪切流作用下的动力学性质。我们针对从半稀溶液到浓溶液区域的单体堆积分数的代表性值,确定了系统的性质。我们系统地分析了所形成的网络结构随剪切速率和堆积分数的变化、疏溶剂斑块的重组以及相应的径向关联函数。将我们的研究结果与流变学联系起来,我们计算了粘度随剪切速率的变化,并讨论了所发现的剪切变稀行为的影响。