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POLYELECTROLYTE MONOLAYERS AT THE MICA/AIR INTERFACE - MECHANICALLY INDUCED REARRANGEMENTS AND MONOLAYER ANNEALING

机译:云母/空气界面处的聚电解质单分子膜-机械诱导的重排和单分子膜退火

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We have carried out a series of experiments on the mobility of a polyelectrolyte monolayer (thickness: 0.7 nm) in a nitrogen atmosphere with the surface force apparatus. If two polyelectrolyte monolayer covered surfaces come into contact, we observe a polyelectrolyte meniscus surrounding the contact area. After separation of the surfaces, a polyelectrolyte ring tracing the rim of the former contact area can be found. The monolayer anneals within minutes. (To observe the isolated monolayer, the optics of the surface forces apparatus had to be further developed.) From wetting and photobleaching experiments with fluorescent-labeled monolayers, we deduce that the annealing is a monolayer nux driven by the change in surface energy. We find that the relative humidity (rh) mainly influences the annealing time if rh less than or equal to 80%. However, at rh approximate to 100%, not a polyelectrolyte but a water meniscus is observed. Polyelectrolyte bilayers can be deformed plastically, yet they do not anneal. [References: 19]
机译:我们已经使用表面力装置对氮气氛中的聚电解质单分子膜(厚度:0.7 nm)的迁移率进行了一系列实验。如果两个聚电解质单层覆盖的表面接触,我们会在接触区域周围观察到一个聚电解质弯月面。在分离表面之后,可以发现追踪先前接触区域的边缘的聚电解质环。单层在几分钟内退火。 (要观察孤立的单层,必须进一步开发表面力装置的光学器件。)从荧光标记单层的润湿和光漂白实验中,我们推断出退火是由表面能变化驱动的单层结。我们发现,如果rh小于或等于80%,则相对湿度(rh)主要影响退火时间。然而,在rh接近100%时,未观察到聚电解质而是水弯液面。聚电解质双层可以发生塑性变形,但不会退火。 [参考:19]

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