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基于明胶/海藻酸钠的强粘性、环境抗性强、高度稳定的水凝胶,可用于 3D 打印制备多功能传感器和柔性超级电容器。

Gelatin/sodium alginate-based strongly adhesive, environmentally resistant, highly stable hydrogel for 3D printing to prepare multifunctional sensors and flexible supercapacitors.

机构信息

State Key Laboratory of Chemistry and Utilization of Carbon Based Energy Resources, College of Chemistry, Xinjiang University, Urumqi 830046, Xinjiang, PR China.

State Key Laboratory of Chemistry and Utilization of Carbon Based Energy Resources, College of Chemistry, Xinjiang University, Urumqi 830046, Xinjiang, PR China.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 2):134712. doi: 10.1016/j.ijbiomac.2024.134712. Epub 2024 Aug 20.

Abstract

The increasing demand for environmentally friendly performance materials in the field of wearable electronics has brought renewable and low-cost hydrogels based on natural polymers into the research spotlight. As a biodegradable natural polymer, sodium alginate (SA) shows great promise for applications in wearable electronics. Here, we report a hydrogel with printability, adhesion, and is highly stable based on gelatin (Gel) and SA. SA improves the viscosity of the hydrogel, which can bond iron products weighing up to 20 kg due to metal coordination with the material, and the hydrogel binder is recyclable and reusable. The presence of glycerin allowed the hydrogel sensor device to maintain sensitivity after exposure to air at 25 °C for up to 35 days, and printed hydrogel samples retained their compressive resilience after exposure to air (25 °C, 55 % RH) for 30 days. Hydrogel-based supercapacitors show good stability after 58 h of charge/discharge cycling. This paper provides research ideas for the preparation of hydrogels with strong adhesion properties, as well as hydrogel 3D printing technology for the preparation of flexible sensor devices and flexible energy storage devices.

摘要

在可穿戴电子产品领域,对环保型性能材料的需求不断增加,基于天然聚合物的可再生和低成本水凝胶成为研究热点。作为一种可生物降解的天然聚合物,海藻酸钠(SA)在可穿戴电子产品应用中具有广阔的前景。在这里,我们报告了一种基于明胶(Gel)和 SA 的具有可打印性、附着力且高度稳定的水凝胶。由于材料与金属的配位作用,SA 提高了水凝胶的粘度,使其能够粘合重达 20 公斤的铁制品,并且水凝胶粘合剂是可回收和可重复使用的。甘油的存在使水凝胶传感器器件在 25°C 的空气中暴露长达 35 天仍能保持灵敏度,并且打印的水凝胶样品在暴露于空气(25°C,55% RH)30 天后仍保持其压缩弹性。基于水凝胶的超级电容器在经过 58 小时的充放电循环后表现出良好的稳定性。本文为制备具有强附着力的水凝胶以及用于制备柔性传感器器件和柔性储能器件的水凝胶 3D 打印技术提供了研究思路。

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