材料科学
共聚物
聚合物
热塑性弹性体
纳米复合材料
链式转移
动态力学分析
弹性体
复合材料
差示扫描量热法
高分子化学
小角X射线散射
化学工程
自由基聚合
散射
热力学
光学
物理
工程类
作者
Yucheng Huang,Yang Zheng,Amrita Sarkar,Yaohui Xu,Morgan Stefik,Brian C. Benicewicz
出处
期刊:Macromolecules
[American Chemical Society]
日期:2017-06-06
卷期号:50 (12): 4742-4753
被引量:40
标识
DOI:10.1021/acs.macromol.7b00873
摘要
Thermoplastic elastomer (TPE) grafted nanoparticles were prepared by grafting block copolymer poly(styrene-block-(n-butyl acrylate)) onto silica nanoparticles (NPs) via surface-initiated reversible addition–fragmentation chain transfer (RAFT) polymerization. The effects of polymer chain length and graft density on the mechanical properties were investigated using films made solely from the grafted NPs. The ultimate tensile stress and elastic modulus increased with increasing PS chain length. The dispersion of the silica NPs and the microphase separation of the block copolymer in the matrix-free polymer nanocomposite were investigated using small-angle X-ray scattering (SAXS), transmission electron microscopy (TEM), differential scanning calorimetry (DSC), and dynamic mechanical analysis (DMA). The higher polymer graft density TPEs exhibited better microphase separation of the block copolymers and more uniform silica NP dispersion than lower polymer graft density TPEs with similar polymer chain length and composition.
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