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用于直接比较水支撑和独立超薄聚合物薄膜力学响应的SMART转移方法。

SMART transfer method to directly compare the mechanical response of water-supported and free-standing ultrathin polymeric films.

作者信息

Galuska Luke A, Muckley Eric S, Cao Zhiqiang, Ehlenberg Dakota F, Qian Zhiyuan, Zhang Song, Rondeau-Gagné Simon, Phan Minh D, Ankner John F, Ivanov Ilia N, Gu Xiaodan

机构信息

Center for Optoelectronic Materials and Devices, School of Polymer Science and Engineering, University of Southern Mississippi, Hattiesburg, MS, 39406, USA.

Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, TN, 37830, USA.

出版信息

Nat Commun. 2021 Apr 20;12(1):2347. doi: 10.1038/s41467-021-22473-w.

Abstract

Intrinsic mechanical properties of sub-100 nm thin films are markedly difficult to obtain, yet an ever-growing necessity for emerging fields such as soft organic electronics. To complicate matters, the interfacial contribution plays a major role in such thin films and is often unexplored despite supporting substrates being a main component in current metrologies. Here we present the shear motion assisted robust transfer technique for fabricating free-standing sub-100 nm films and measuring their inherent structural-mechanical properties. We compare these results to water-supported measurements, exploring two phenomena: 1) The influence of confinement on mechanics and 2) the role of water on the mechanical properties of hydrophobic films. Upon confinement, polystyrene films exhibit increased strain at failure, and reduced yield stress, while modulus is reduced only for the thinnest 19 nm film. Water measurements demonstrate subtle differences in mechanics which we elucidate using quartz crystal microbalance and neutron reflectometry.

摘要

获得亚100纳米薄膜的本征力学性能极具挑战性,然而对于诸如柔性有机电子学等新兴领域而言,其需求却与日俱增。更复杂的是,界面作用在这类薄膜中起着主要作用,尽管支撑衬底是当前计量学中的主要组成部分,但该作用往往未被探究。在此,我们展示了一种剪切运动辅助的稳健转移技术,用于制备独立的亚100纳米薄膜并测量其固有结构力学性能。我们将这些结果与水支撑测量结果进行比较,探究两种现象:1)受限对力学的影响;2)水对疏水薄膜力学性能的作用。在受限情况下,聚苯乙烯薄膜在失效时表现出应变增加、屈服应力降低,而仅最薄的19纳米薄膜的模量降低。水测量结果表明力学方面存在细微差异,我们使用石英晶体微天平及中子反射测量法对这些差异进行了阐释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c40/8058343/61e2cb328e72/41467_2021_22473_Fig1_HTML.jpg

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