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Tunable Nanolubrication between Dual-Responsive Polyionic Grafts

机译:双响应聚离子接枝之间可调节的纳米润滑

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摘要

This study reports on a direct approach of quantitatively probing the nanotribological response of chemically end-grafted polyions. A combination of a quartz crystal microbalance with dissipation and atomic force microscopy, in the now well established colloidal probe mode, was utilized to investigate the stimuli-induced lubrication behavior between poly(2-(dimethylamino)ethyl methacrylate) grafts on gold. Force and friction measurements showed reversible transitions of up to an order of magnitude difference induced by varying the solvent conditions. The greatly enhanced lubrication observed at low pH was attributed to the formation of a repulsive, highly charged, hydrated cushion. At high pH the friction was significantly increased. The system turned attractive above the lower critical solution temperature with a small friction reduction interpreted as being due to nanoscopic flattening at the interfacial boundary.
机译:这项研究报告了定量探测化学末端接枝的聚离子的纳米摩擦响应的直接方法。利用现已确立的胶体探针模式,将石英微天平与耗散和原子力显微镜相结合,用于研究金上的聚(2-(二甲基氨基)乙基甲基丙烯酸乙酯)接枝之间的刺激诱导润滑行为。力和摩擦力测量显示,由于改变溶剂条件而导致的可逆转变达到一个数量级差异。在低pH值下观察到的润滑作用大大增强,这归因于形成了排斥性,带电高的水合缓冲垫。在高pH下,摩擦力显着增加。该系统在较低的临界溶液温度之上具有吸引力,并且摩擦减小较小,这被认为是由于界面边界处的纳米扁平化。

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