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Dielectric relaxations in ultra-thin films of PMMA: assessing the length scale of cooperativity in the dynamic glass transition

机译:PMMA超薄膜中的介电弛豫:评估动态玻璃化转变中协同作用的长度尺度

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The local and cooperative dynamics of supported ultra-thin films (L = 4-170 nm) of poly(methyl methacrylate) was investigated by dielectric spectroscopy at frequencies from 0.1 Hz to 10/sup 6/ Hz and temperatures from 250-423 K. To assess the effect of stereoregularity, three tacticities (i, a and s-PMMA) of similar molecular weight M/sub n/ = 120-140/spl times/10/sup 3/ g mol/sup -1/ were studied. A second M/sub n/ value for s-PMMA was also studied. For i-PMMA, a decrease of the glass transition temperature T/sub g/ by up to 10 K was observed for a film thickness L > 25 nm (which is comparable to R/sub EE/), indicated by a down-shift of the peak temperature T/sub /spl alpha// in the loss /spl epsiv/"(T) at low and high frequencies and by a shift of the maximum in the apparent activation energy E/sub a/(T) of the /spl alpha/-process. Changes in the relaxation strength and the peak shape are apparent for L /spl les/ 50 nm. In addition, the /spl beta/-relaxation probing the local mobility was investigated for i-, a- and s- PMMA. Interestingly, all polymers revealed a systematic speedup in the local dynamics for L > 25 nm which is accompanied by systematic changes in the relaxation strength. For i-PMMA, a clear relation between the thickness dependence of /spl tau//sub /spl beta// and /spl tau//sub /spl alpha// was found indicating that thickness dependences in the cooperative dynamics are predominantly induced by changes in the local mobility. These findings are consistent with the idea of confinement induced changes in the orientation and conformation statistics for thicknesses below R/sub EE/.
机译:通过介电光谱法在0.1 Hz至10 / sup 6 / Hz的频率和250-423 K的温度下研究了聚(甲基丙烯酸甲酯)支撑的超薄膜(L = 4-170 nm)的局部和协同动力学。为了评估立构规整度的影响,研究了三种分子量相似的M / sub n / = 120-140 / spl乘以10 / sup 3 / g mol / sup -1 /的立构规整度(i,a和s-PMMA)。还研究了s-PMMA的第二M / sub n /值。对于i-PMMA,对于膜厚度L> 25 nm(与R / sub EE /相当),观察到玻璃化转变温度T / sub g /降低了10K。峰值温度T / sub / spl alpha //在低频和高频下的损耗/ spl epsiv /“(T)中,并且通过最大视在活化能E / sub a /(T)的变化/ spl alpha /-过程。对于L / spl les / 50 nm,弛豫强度和峰形的变化是明显的。此外,还研究了/ spl beta /松弛探测局部迁移率的i-,a-和有趣的是,所有聚合物在L> 25 nm时都表现出局部动力学的系统加速,并伴随着弛豫强度的系统变化;对于i-PMMA,/ spl tau //的厚度依赖性之间存在明显的关系sub / spl beta //和/ spl tau // sub / spl alpha //被发现表明合作动力学中的厚度依赖性主要是由局部变化引起的流动性。这些发现与R / sub EE /以下厚度的限制引起的取向和构象统计变化有关。

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