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亚毫米级球形自振荡凝胶的制备及其各向同性体积振荡行为的控制。

Fabrication of submillimeter-sized spherical self-oscillating gels and control of their isotropic volumetric oscillatory behaviors.

作者信息

Lee Won Seok, Enomoto Takafumi, Akimoto Aya Mizutani, Yoshida Ryo

机构信息

Department of Materials Engineering, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

Soft Matter. 2023 Mar 1;19(9):1772-1781. doi: 10.1039/d2sm01604d.

Abstract

In this study, we established a fabrication method and analyzed the volumetric self-oscillatory behaviors of submillimeter-sized spherical self-oscillating gels. We validated that the manufactured submillimeter-sized spherical self-oscillating gels exhibited isotropic volumetric oscillations during the Belousov-Zhabotinsky (BZ) reaction. In addition, we experimentally elucidated that the volumetric self-oscillatory behaviors (, period and amplitude) and the oscillatory profiles depended on the following parameters: (1) the molar composition of -(3-aminopropyl)methacrylamide hydrochloride (NAPMAm) in the gels and (2) the concentration of Ru(bpy)-NHS solution containing an active ester group on conjugation. These clarified relationships imply that controlling the amount of Ru(bpy) in the gel network could influence the gel volumetric oscillation during the BZ reaction. These results of submillimeter-sized and spherical self-oscillating gels bridge knowledge gaps in the current field because the gels with corresponding sizes and shapes have not been systematically explored yet. Therefore, our study could be a cornerstone for diverse applications of (self-powered) gels in various scales and shapes, including soft actuators exhibiting life-like functions.

摘要

在本研究中,我们建立了一种制造方法,并分析了亚毫米级球形自振荡凝胶的体积自振荡行为。我们验证了制造的亚毫米级球形自振荡凝胶在Belousov-Zhabotinsky(BZ)反应期间表现出各向同性的体积振荡。此外,我们通过实验阐明了体积自振荡行为(周期和振幅)以及振荡曲线取决于以下参数:(1)凝胶中-(3-氨丙基)甲基丙烯酰胺盐酸盐(NAPMAm)的摩尔组成,以及(2)共轭时含活性酯基的Ru(bpy)-NHS溶液的浓度。这些明确的关系表明,控制凝胶网络中Ru(bpy)的量可能会影响BZ反应期间凝胶的体积振荡。亚毫米级球形自振荡凝胶的这些结果弥合了当前领域的知识空白,因为尚未对具有相应尺寸和形状的凝胶进行系统研究。因此,我们的研究可能成为(自供电)凝胶在各种尺度和形状下多样化应用的基石,包括具有逼真功能的软致动器。

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