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ADHESION ENERGY HYSTERESIS AND FRICTION BETWEEN ULTRATHIN POLYGLUTAMATE FILMS MEASURED WITH THE SURFACE FORCES APPARATUS

机译:用表面力装置测量的超薄聚谷氨酸酯膜之间的粘附能滞后和摩擦

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Adhesion and friction forces between deposited monolayers of poly(gamma-methyl L-glutamate)(x)-co-(gamma-n-octadecyl L-glutamate)(y)-a ''hairy rod'' polymer having a rigid main chain rod and alkyl side chains containing either 1 or 18 C atoms-were measured using the surface forces apparatus technique. By performing dynamic (time-dependent) adhesion energy and friction experiments as a function of temperature T, we obtained the energy loss spectra for these quasi two-dimensional films. The measured adhesion energy losses or hysteresis as a function of temperature are shown to be related to the interdigitation of the octadecyl side chains, caused by different molecular motions that have been previously shown to be active at different temperatures. Friction experiments probed the energy dissipation processes arising from lateral motion. Assuming that the molecular dissipation processes are the same in both types of measurements (adhesion and friction), we used a previously derived simple formulate relate quantitatively the adhesion energy hysteresis and friction forces. [References: 38]
机译:沉积的聚(γ-甲基L-谷氨酸甲酯)(x)-共-(γ-n-十八烷基L-谷氨酸)(y)-具有刚性主链的“毛杆”聚合物的单层之间的粘附力和摩擦力使用表面力装置技术测量了含有1个或18个C原子的碳原子的碳原子的直链和烷基侧链。通过进行动态(随时间变化)的粘附能和摩擦实验作为温度T的函数,我们获得了这些准二维薄膜的能量损失谱。所测得的粘附能损失或滞后随温度的变化与十八烷基侧链的叉指关系有关,后者是由先前已证明在不同温度下具有活性的不同分子运动引起的。摩擦实验探讨了由横向运动引起的能量耗散过程。假设在两种类型的测量(粘附力和摩擦力)中分子耗散过程相同,我们使用先前推导的简单公式来定量地关联粘附力磁滞和摩擦力。 [参考:38]

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