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基于明胶和鞣酸的离子凝胶用于肌肉活动记录和刺激电极。

Gelatin and Tannic Acid Based Iongels for Muscle Activity Recording and Stimulation Electrodes.

机构信息

Instituto de Desarrollo Tecnológico para la Industria Química (INTEC), CONICET, Güemes 3450, Santa Fe 3000, Argentina.

Facultad de Ingeniería Química, Universidad Nacional del Litoral, Santiago del Estero 2829, Santa Fe 3000, Argentina.

出版信息

ACS Biomater Sci Eng. 2022 Jun 13;8(6):2598-2609. doi: 10.1021/acsbiomaterials.2c00317. Epub 2022 Jun 1.

Abstract

Iongels are soft ionic conducting materials, usually composed of polymer networks swollen with ionic liquids (ILs), which are being investigated for applications ranging from energy to bioelectronics. The employment of iongels in bioelectronic devices such as bioelectrodes or body sensors has been limited by the lack of biocompatibility of the ILs and/or polymer matrices. In this work, we present iongels prepared from solely biocompatible materials: (i) a biobased polymer network containing tannic acid as a cross-linker in a gelatin matrix and (ii) three different biocompatible cholinium carboxylate ionic liquids. The resulting iongels are flexible and elastic with Young's modulus between 11.3 and 28.9 kPa. The morphology of the iongels is based on a dual polymer network system formed by both chemical bonding due to the reaction of the gelatin's amines with the polyphenol units and physical interactions between the tannic acid and the gelatin. These biocompatible iongels presented high ionic conductivity values, from 0.003 and up to 0.015 S·cm at room temperature. Furthermore, they showed excellent performance as a conducting gel in electrodes for electromyography and electrocardiogram recording as well as muscle stimulation.

摘要

离子凝胶是柔软的离子导电材料,通常由聚合物网络与离子液体(ILs)溶胀而成,它们正在从能源到生物电子学等领域得到应用。由于 ILs 和/或聚合物基质的生物相容性不足,离子凝胶在生物电子设备(如生物电极或身体传感器)中的应用受到限制。在这项工作中,我们展示了仅由生物相容性材料制备的离子凝胶:(i)一种含有单宁酸作为交联剂的基于生物的聚合物网络,存在于明胶基质中,以及(ii)三种不同的生物相容性胆碱羧酸离子液体。所得离子凝胶具有柔韧性和弹性,杨氏模量在 11.3 至 28.9 kPa 之间。离子凝胶的形态基于双重聚合物网络系统,该系统由明胶的胺与多酚单元之间的反应产生的化学键合以及单宁酸与明胶之间的物理相互作用形成。这些生物相容性离子凝胶在室温下表现出高离子电导率值,从 0.003 到 0.015 S·cm。此外,它们在肌电图和心电图记录以及肌肉刺激的电极中作为导电凝胶表现出优异的性能。

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