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Temperature dependence of polymer diffusion in MWCNT/PS nanocomposites

机译:MWCNT / PS纳米复合材料中聚合物扩散的温度依赖性

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Polymer tracer diffusion in multiwalled carbon nanotubes (MWCNT)/polystyrene (PS) nanocomposites as a function of MWCNT concentration was measured from 152 to 214 C. At 170 C, we previously reported a minimum in the tracer diffusion coefficient that occurs at ~2 wt % MWCNT; this concentration corresponds to the onset of solidlike behavior as measured by linear viscoelasticity. The minimum in the tracer diffusion coefficient in the nanocomposites (D) normalized by the tracer diffusion coefficient without MWCNTs (D_0) is shallower at higher temperatures, namely, (D/D _0)_(min) = 0.9 at 214 C and (D/D_0)_(min) = 0.6 at 152 C. Using our trap model, this implies that the difference between the tracer diffusion parallel and perpendicular to the MWCNT is smaller at higher temperatures. Finally, at fixed MWCNT concentrations (0.5, 2, and 6 wt %) the temperature dependence of the tracer diffusion coefficient follows the Williams-Landel-Ferry (WLF) equation, indicating that polymer dynamics in nanocomposites is captured by changes in free volume with temperature.
机译:在152至214 C下测量了多壁碳纳米管(MWCNT)/聚苯乙烯(PS)纳米复合物中聚合物示踪剂扩散随MWCNT浓度的变化。在170 C时,我们先前报道了在〜2 wt%时示踪剂扩散系数最小%MWCNT;该浓度对应于通过线性粘弹性测量的固体行为的开始。在没有MWCNTs(D_0)的情况下,由示踪扩散系数归一化的纳米复合材料(D)中示踪扩散系数的最小值在较高温度下较浅,即(D / D _0)_(min)= 0.9在214 C和(D / D_0)_(min)= 152°C时的0.6。使用我们的陷阱模型,这意味着平行和垂直于MWCNT的示踪剂扩散之间的差异在较高温度下较小。最后,在固定的MWCNT浓度(0.5、2和6 wt%)下,示踪剂扩散系数的温度依赖性遵循Williams-Landel-Ferry(WLF)方程,这表明纳米复合物中的聚合物动力学通过自由体积的变化来捕获。温度。

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