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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Tailoring normal adhesion of arrays of thermoplastic, spring-like polymer nanorods by shaping nanorod tips
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Tailoring normal adhesion of arrays of thermoplastic, spring-like polymer nanorods by shaping nanorod tips

机译:通过塑造纳米棒尖端来调整热塑性,弹簧状聚合物纳米棒阵列的正常附着力

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摘要

The tip shape of contact elements in hairy adhesion systems is crucial for proper contact formation and adhesion enhancement. While submicrometer terminal contact elements show much better adhesion performance than their larger counterparts, shaping their tips so as to maximize normal adhesion has remained challenging. We prepared durable nanorod arrays consisting of stiff, highly entangled thermoplastic polymers with rationally shaped tips by replication of anodic aluminum oxide (AAO). Nanorod arrays with pancake-like tips showed pronounced normal dry adhesion already for small loading forces. For small loading forces, adhesion forces significantly exceeded the loading forces. Both the absence of hysteresis in force/displacement curves and the pronounced durability of the nanorods in series of repeated attachment/detachment cycles suggest that the nanorods behave like elastic springs. Experimental load-adhesion curves were reproduced with a modified Schargott-Popov-Gorb (SPG) model, assuming that contacts between probe and individual nanorods are sequentially formed with increasing indentation depth.
机译:毛状粘附系统中接触元件的尖端形状对于适当的接触形成和粘附增强至关重要。尽管亚微米级端子接触元件的粘附性能要比较大的终端元件好得多,但要使其尖端成形以最大程度地提高正常粘附力仍然具有挑战性。我们制备了耐用的纳米棒阵列,该阵列由坚硬,高度纠缠的热塑性聚合物组成,并通过阳极氧化铝(AAO)的复制形成了合理形状的尖端。具有薄煎饼状尖端的纳米棒阵列已经显示出明显的正常干粘附力,且加载力很小。对于较小的加载力,粘附力大大超过了加载力。在力/位移曲线中没有滞后现象以及纳米棒在一系列重复的附着/分离循环中的显着耐久性两者都表明,纳米棒的行为就像弹性弹簧。假设修改后的探针深度与单个纳米棒之间的接触是依次形成的,则使用修改后的Schargott-Popov-Gorb(SPG)模型复制了实验载荷-粘附曲线。

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