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基于聚(N,N-二甲基丙烯酰胺-共-硬脂酸丙烯酸酯和/或月桂酸丙烯酸酯)的3D/4D可打印形状记忆凝胶的光散射和流变学研究

Light Scattering and Rheological Studies of 3D/4D Printable Shape Memory Gels Based on Poly (,-Dimethylacrylamide-co-Stearyl Acrylate and/or Lauryl Acrylates).

作者信息

Shiblee M D Nahin Islam, Ahmed Kumkum, Yamazaki Yuta, Kawakami Masaru, Furukawa Hidemitsu

机构信息

Department of Mechanical Systems Engineering, Graduate School of Science and Engineering, Yamagata University, Yonezawa, Yamagata 992-8510, Japan.

Shibaura Institute of Technology, Koto City, Tokyo 135-8548, Japan.

出版信息

Polymers (Basel). 2020 Dec 30;13(1):128. doi: 10.3390/polym13010128.

Abstract

In this work, we present the structural analysis of 3D/4D printable ,-dimethylacrylamide (DMAAm)-co-stearyl acrylate (SA) and/or lauryl acrylate (LA)-based shape memory gels (SMGs). We characterized these gels by scanning microscopic light scattering technique (SMILS) where a time- and space-averaged correlation function is obtained to overcome the inhomogeneous media. Thus, the characteristic size of the gel internal network (mesh size, ξ) and crosslinking densities are estimated from the Einstein-Stokes formula. The rheological study of the SMGs revealed information about their mechanical strength and transition temperature. From the experimental storage modulus measured by rheological study, crosslinking density and mesh size of the network were also calculated. Both the techniques suggest that SMG with high crystalline content of SA monomer in the gel network contain smaller mesh size (1.13 nm for SMILS and 9.5 nm for rheology study) and high crosslinking density. The comparative study between the light scattering technique and rheological analysis through the quantitative analysis of crosslinking densities will be important to understand the structural properties of the SMGs.

摘要

在这项工作中,我们展示了基于3D/4D可打印的N,N-二甲基丙烯酰胺(DMAAm)与丙烯酸硬脂酯(SA)和/或丙烯酸月桂酯(LA)的形状记忆凝胶(SMG)的结构分析。我们通过扫描显微光散射技术(SMILS)对这些凝胶进行了表征,该技术可获得时间和空间平均相关函数以克服介质的不均匀性。因此,凝胶内部网络的特征尺寸(网孔尺寸,ξ)和交联密度可根据爱因斯坦-斯托克斯公式估算得出。形状记忆凝胶的流变学研究揭示了其机械强度和转变温度的相关信息。根据流变学研究测得的实验储能模量,还计算了网络的交联密度和网孔尺寸。这两种技术均表明,凝胶网络中SA单体结晶含量高的形状记忆凝胶具有较小的网孔尺寸(扫描显微光散射技术测得为1.13纳米,流变学研究测得为9.5纳米)和较高的交联密度。通过交联密度定量分析对光散射技术和流变学分析进行比较研究,对于理解形状记忆凝胶的结构特性具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dd1/7794971/1e9aa2de2f5e/polymers-13-00128-g001.jpg

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