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具有整体集成金纳米复合材料电极的电活性离子软致动器。

Electroactive Ionic Soft Actuators with Monolithically Integrated Gold Nanocomposite Electrodes.

机构信息

Interdisciplinary Centre for Nanostructured Materials and Interfaces (CIMaINa), Physics Department, University of Milan, Via Celoria 16, 20133, Milan, Italy.

SEMM-European School of Molecular Medicine, Campus IFOM-IEO, Via Adamello 16, 20139, Milan, Italy.

出版信息

Adv Mater. 2017 Jun;29(23). doi: 10.1002/adma.201606109. Epub 2017 Apr 18.

DOI:10.1002/adma.201606109
PMID:28417488
Abstract

Electroactive ionic gel/metal nanocomposites are produced by implanting supersonically accelerated neutral gold nanoparticles into a novel chemically crosslinked ion conductive soft polymer. The ionic gel consists of chemically crosslinked poly(acrylic acid) and polyacrylonitrile networks, blended with halloysite nanoclays and imidazolium-based ionic liquid. The material exhibits mechanical properties similar to that of elastomers (Young's modulus ≈ 0.35 MPa) together with high ionic conductivity. The fabrication of thin (≈100 nm thick) nanostructured compliant electrodes by means of supersonic cluster beam implantation (SCBI) does not significantly alter the mechanical properties of the soft polymer and provides controlled electrical properties and large surface area for ions storage. SCBI is cost effective and suitable for the scaleup manufacturing of electroactive soft actuators. This study reports the high-strain electromechanical actuation performance of the novel ionic gel/metal nanocomposites in a low-voltage regime (from 0.1 to 5 V), with long-term stability up to 76 000 cycles with no electrode delamination or deterioration. The observed behavior is due to both the intrinsic features of the ionic gel (elasticity and ionic transport capability) and the electrical and morphological features of the electrodes, providing low specific resistance (<100 Ω cm ), high electrochemical capacitance (≈mF g ), and minimal mechanical stress at the polymer/metal composite interface upon deformation.

摘要

电活性离子凝胶/金属纳米复合材料是通过将超声加速的中性金纳米粒子植入新型化学交联的离子导电软聚合物中而制备的。离子凝胶由化学交联的聚丙烯酸和聚丙烯腈网络组成,与埃洛石纳米管和咪唑基离子液体混合。该材料具有类似于弹性体的机械性能(杨氏模量≈0.35 MPa),同时具有高离子电导率。通过超声团束注入(SCBI)制造薄(≈100 nm 厚)纳米结构的柔顺电极,不会显著改变软聚合物的机械性能,并提供受控的电性能和大的离子储存表面积。SCBI 具有成本效益,适合用于电活性软致动器的规模化制造。本研究报告了新型离子凝胶/金属纳米复合材料在低电压(0.1 至 5 V)下的高应变机电致动性能,在 76000 次循环后具有长期稳定性,没有电极分层或恶化。观察到的行为归因于离子凝胶的固有特性(弹性和离子传输能力)以及电极的电学和形态学特性,在变形时提供低比电阻(<100 Ω cm)、高电化学电容(≈mF g)和聚合物/金属复合材料界面处的最小机械应力。

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