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聚合物纳米复合材料的电化学控制溶胀及力学性能

Electrochemically controlled swelling and mechanical properties of a polymer nanocomposite.

作者信息

Schmidt Daniel J, Cebeci Fevzi C, Kalcioglu Z Ilke, Wyman Samantha G, Ortiz Christine, Van Vliet Krystyn J, Hammond Paula T

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

ACS Nano. 2009 Aug 25;3(8):2207-16. doi: 10.1021/nn900526c.

Abstract

We present the layer-by-layer assembly of an electroactive polymer nanocomposite thin film containing cationic linear poly(ethyleneimine) (LPEI) and 68 vol % anionic Prussian Blue (PB) nanoparticles, which allow for electrochemical control over film thickness and mechanical properties. Electrochemical reduction of the PB doubles the negative charge on the particles, causing an influx of water and ions from solution to maintain electroneutrality in the film; concomitant swelling and increased elastic compliance of the film result. Reversible swelling upon reduction is on the order of 2-10%, as measured via spectroscopic ellipsometry and electrochemical atomic force microscopy. Reversible changes in the Young's elastic modulus of the hydrated composite film upon reduction are on the order of 50% (from 3.40 to 1.75 GPa) as measured with in situ nanoindentation, and a qualitative increase in viscous contributions to energy dissipation upon redox is indicated by electrochemical quartz crystal microbalance. Electrochemical stimuli maintain a mild operating environment and can be applied rapidly, reversibly, and locally. We maintain that electrochemical control over the swelling and mechanical behavior of polymer nanocomposites could have important implications for responsive coatings of nanoscale devices, including mechanically tunable surfaces to modulate behavior of adherent cells.

摘要

我们展示了一种包含阳离子线性聚(乙烯亚胺)(LPEI)和68体积%阴离子普鲁士蓝(PB)纳米颗粒的电活性聚合物纳米复合薄膜的逐层组装,这使得能够对薄膜厚度和机械性能进行电化学控制。PB的电化学还原使颗粒上的负电荷加倍,导致水和离子从溶液中流入以维持薄膜中的电中性;随之而来的是薄膜的膨胀和弹性顺应性增加。通过光谱椭偏仪和电化学原子力显微镜测量,还原时的可逆膨胀约为2 - 10%。用原位纳米压痕测量,水合复合薄膜在还原时杨氏弹性模量的可逆变化约为50%(从3.40 GPa降至1.75 GPa),并且电化学石英晶体微天平表明氧化还原时能量耗散的粘性贡献有定性增加。电化学刺激保持温和的操作环境,并且可以快速、可逆且局部地施加。我们认为,对聚合物纳米复合材料的膨胀和机械行为进行电化学控制可能对纳米级器件的响应涂层具有重要意义,包括用于调节粘附细胞行为的机械可调表面。

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