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水环境中表面接枝聚乙二醇层的纳米摩擦学

Nanotribology of surface-grafted PEG layers in an aqueous environment.

作者信息

Drobek Tanja, Spencer Nicholas D

机构信息

Laboratory for Surface Science and Technology, Department of Materials, ETH Zurich, Wolfgang-Pauli-Strasse 10, Zurich, Switzerland.

出版信息

Langmuir. 2008 Feb 19;24(4):1484-8. doi: 10.1021/la702289n. Epub 2007 Oct 16.

Abstract

The lubrication properties of adsorbed poly(L-lysine)-graft-poly(ethylene glycol) in aqueous buffer solution were studied with the surface forces apparatus. In general, the polymer brushes revealed extremely low friction forces. Two distinct regimes could be identified. In response to lateral shear, the friction forces of intact polymer films at moderate loads were below the detection limit. At high loads, when the films were compressed to about 10% of the original equilibrium film thickness, the friction showed a reversible increase with load. Under certain conditions, film destruction was observed, immediately followed by a dramatic increase in the frictional force and an expansion of the adsorbed brush layer. By the addition of free polymer to the buffer solution, the resistance of the polymer brushes to abrasion was dramatically increased by readsorption of the polymer following friction-induced desorption. This self-healing capacity and the extremely low friction of the adsorbed copolymer films contribute to their excellent properties as lubricant additives for water-based lubrication under boundary conditions.

摘要

利用表面力仪研究了吸附的聚(L-赖氨酸)-接枝-聚(乙二醇)在水性缓冲溶液中的润滑性能。一般来说,聚合物刷显示出极低的摩擦力。可以识别出两种不同的状态。响应于横向剪切,中等负载下完整聚合物膜的摩擦力低于检测极限。在高负载下,当膜被压缩至原始平衡膜厚度的约10%时,摩擦力随负载呈可逆增加。在某些条件下,观察到膜的破坏,紧接着摩擦力急剧增加且吸附刷层膨胀。通过向缓冲溶液中添加游离聚合物,聚合物刷在摩擦诱导解吸后通过聚合物的再吸附显著提高了其耐磨性。这种自愈能力以及吸附共聚物膜的极低摩擦力有助于其作为边界条件下水基润滑的润滑剂添加剂具有优异性能。

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