Doi Yuya, Takano Atsushi, Takahashi Yoshiaki, Matsushita Yushu
Department of Molecular and Macromolecular Chemistry, Nagoya University, Nagoya 4648603, Japan.
Institute for Materials Chemistry and Engineering, Kyushu University, Kasuga, Fukuoka 8168580, Japan.
Soft Matter. 2020 Sep 30;16(37):8720-8724. doi: 10.1039/d0sm01098g.
In this study, linear melt rheology of a single-tail tadpole-shaped polystyrene, ST-30/80, having ring and linear sizes of MR ∼ 30 kg mol-1 and ML ∼ 80 kg mol-1, respectively, was examined, and the effect of the ring size on rheological properties of tadpole polymers was discussed by comparing with the data of the previously reported tadpole samples having MR ∼ 60 kg mol-1. ST-30/80 exhibits an entanglement plateau and shows a clearly slower terminal relaxation than that of its component ring and linear polymers. When the zero-shear viscosity η0 for ST-30/80 is plotted against the molecular weight of a linear tail chain, the data point lies on the single curve of η0 for 4- and 6-arm star polymers and the single-tail tadpoles with MR ∼ 60 kg mol-1. These results suggest that the tadpole molecule in this study spontaneously forms a characteristic entanglement network, i.e., the intermolecular ring-linear threading, in the same manner as the previous tadpole samples, even though the size of the ring part is just slightly larger than the entanglement molecular weight (i.e., MR ∼ 1.8Me).
在本研究中,对一种单尾蝌蚪形聚苯乙烯ST - 30/80的线性熔体流变学进行了研究,其环尺寸和线性尺寸分别为MR ∼ 30 kg mol-1和ML ∼ 80 kg mol-1,并通过与先前报道的MR ∼ 60 kg mol-1的蝌蚪形样品的数据进行比较,讨论了环尺寸对蝌蚪形聚合物流变性能的影响。ST - 30/80呈现出缠结平台,并且其末端松弛明显比其组成的环状和线性聚合物慢。当将ST - 30/80的零剪切粘度η0相对于线性尾链的分子量作图时,数据点落在4臂和6臂星形聚合物以及MR ∼ 60 kg mol-1的单尾蝌蚪形聚合物的η0的单一曲线上。这些结果表明,本研究中的蝌蚪形分子以与先前蝌蚪形样品相同的方式自发形成了一种特征性的缠结网络,即分子间的环 - 线性穿线,尽管环部分的尺寸仅略大于缠结分子量(即MR ∼ 1.8Me)。