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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Rate-Dependent Adhesion between Opposed Perfluoropoly(alkyl ether) Layers: Dependence on Chain-End Functionality and Chain Length
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Rate-Dependent Adhesion between Opposed Perfluoropoly(alkyl ether) Layers: Dependence on Chain-End Functionality and Chain Length

机译:相对的全氟聚(烷基醚)层之间的速率依赖性粘合力:取决于链端官能度和链长

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Adhesion was measured repeatedly between opposed molecularly thin layers of perfluoropoly(alkyl ether)s on mica, with particular attention to the dependence of the adhesion on chain-end functionality and chain length of the polymer. The polymer layers were kept in contact for specified times that differed by 4 orders of magnitude (0.01-500 s) and then unloaded (separated) at rates that varied by 5 orders of magnitude (0.003-120 μm/s of a detachment device with spring constant 1.1 * 10~4 N/m) using a modified surface forces apparatus with piezoelectric actuators supporting one surface. Rate dependence resulting in an increase of the adhesion by a factor up to 3 was observed when the unloading rate exceeded a critical value that was found to depend not only on the polymer sample but also on the contact time between opposed layers. At a given unloading rate, the adhesion was larger, the longer the surfaces were left in stationary contact before separation. No history dependence was observed when the unloading rate was raised and subsequently lowered. For relatively short contact times (0.01-1 s), the critical unloading rate was larger for the polymer that contained polar end groups than for unfunctionalized polymer of similar chain length, indicating a lower mobility in the former case, and thus slower initial interdigitation of the chains, since the polar end group had a preferential affinity for the underlying surface. This effect vanished for contact times of 100-500 s. For polymer chains without polar end groups, the critical value of the unloading rate was smaller, the larger the chain length, and the increase in adhesion with unloading rate was more pronounced, presumably reflecting slower relaxation of the longer chains. The rate dependence is analyzed quantitatively.
机译:在云母上全氟聚(烷基醚)的相对分子薄层之间反复测量粘合力,尤其要注意粘合力对聚合物链端官能度和链长的依赖性。聚合物层保持接触的时间间隔为4个数量级(0.01-500 s),然后以5个数量级(0.003-120μm/ s的分离装置)的速率卸载(分离)。弹簧常数1.1 * 10〜4 N / m),使用改进的表面力装置,压电致动器支撑一个表面。当卸载速率超过临界值时,观察到速率依赖性导致粘附力增加多达3倍,发现该临界值不仅取决于聚合物样品,而且取决于相对层之间的接触时间。在给定的卸载速率下,分离之前,表面保持静止接触的时间越长,粘附力越大。当卸载率升高然后降低时,没有观察到历史依赖性。对于相对较短的接触时间(0.01-1 s),含极性端基的聚合物的临界卸载速率要比类似链长的未官能化聚合物的临界卸载速率大,这表明在前一种情况下迁移率较低,因此,初始的交联速度较慢因为极性端基对下面的表面具有优先的亲和力,所以它们是链。对于100-500 s的接触时间,此效果消失了。对于没有极性端基的聚合物链,卸载速率的临界值越小,链长越大,粘附力随卸载速率的增加就越明显,这可能是较长链的松弛较慢。对速率依赖性进行定量分析。

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