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可食用充电电池。

An Edible Rechargeable Battery.

机构信息

Center for Nano Science and Technology @PoliMi, Istituto Italiano di Tecnologia, Via R. Rubattino, 81, Milan, 20134, Italy.

Department of Physics, Politecnico di Milano, Piazza Leonardo da Vinci, 32, Milan, 20133, Italy.

出版信息

Adv Mater. 2023 May;35(20):e2211400. doi: 10.1002/adma.202211400. Epub 2023 Mar 31.

Abstract

Edible electronics is a growing field that aims to produce digestible devices using only food ingredients and additives, thus addressing many of the shortcomings of ingestible electronic devices. Edible electronic devices will have major implications for gastrointestinal tract monitoring, therapeutics, as well as rapid food quality monitoring. Recent research has demonstrated the feasibility of edible circuits and sensors, but to realize fully edible electronic devices edible power sources are required, of which there have been very few examples. Drawing inspiration from living organisms, which use redox cofactors to power biochemical machines, a rechargeable edible battery formed from materials eaten in everyday life is developed. The battery is realized by immobilizing riboflavin and quercetin, common food ingredients and dietary supplements, on activated carbon, a widespread food additive. Riboflavin is used as the anode, while quercetin is used as the cathode. By encapsulating the electrodes in beeswax, a fully edible battery is fabricated capable of supplying power to small electronic devices. The proof-of-concept battery cell operated at 0.65 V, sustaining a current of 48 µA for 12 min. The presented proof-of-concept will open the doors to new edible electronic applications, enabling safer and easier medical diagnostics, treatments, and unexplored ways to monitor food quality.

摘要

可食用电子学是一个快速发展的领域,旨在仅使用食物成分和添加剂来生产可消化的设备,从而解决可食用电子设备的许多缺点。可食用电子设备将对胃肠道监测、治疗以及快速食品质量监测产生重大影响。最近的研究已经证明了可食用电路和传感器的可行性,但要实现完全可食用的电子设备,需要可食用电源,而这方面的例子却很少。受生物体的启发,生物体利用氧化还原辅因子为生化机器提供动力,开发了一种由日常生活中食用的材料制成的可充电可食用电池。该电池通过将常见的食物成分和膳食补充剂核黄素和槲皮素固定在活性炭上而实现,活性炭是一种广泛使用的食品添加剂。核黄素被用作阳极,而槲皮素被用作阴极。通过将电极封装在蜂蜡中,制造出一种完全可食用的电池,能够为小型电子设备供电。该概念验证电池在 0.65 V 下运行,可维持 48 µA 的电流 12 分钟。该概念验证将为新的可食用电子应用打开大门,实现更安全、更便捷的医疗诊断、治疗以及探索食品质量监测的新方法。

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