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用于自供电食品传感的摩擦电材料与器件的合理设计

Rational Design of Triboelectric Materials and Devices for Self-Powered Food Sensing.

作者信息

Bai Yayu, Zhao Tong, Cai Chenchen, Zhang Song, Wang Jinlong, Liu Yanhua, Chi Mingchao, Liu Tao, Du Guoli, Wei Zhiting, Meng Xiangjiang, Shao Yuzheng, Wang Shuangfei, Luo Bin, Nie Shuangxi

机构信息

Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, School of Light Industry and Food Engineering, Guangxi University, Nanning, 530004, China.

出版信息

Small. 2024 Dec;20(50):e2407359. doi: 10.1002/smll.202407359. Epub 2024 Sep 23.

Abstract

Against the backdrop of rapid advancements in 5G and Internet of Things (IoT) technologies, there is an urgent need to upgrade food sensing systems to achieve automation, digitalization, and intelligence. However, this transformation process faces numerous challenges. Triboelectric nanogenerators (TENGs), as an emerging energy conversion and sensing technology, play a crucial role in this context. They not only provide power to functional devices but also serve as sensors in multifunctional self-powered food sensing systems, capable of detecting various physical and chemical information. This review explores the development of TENGs in the field of food sensing, focusing on the working principles of their self-powered sensing. The review also systematically organizes and classifies the material and device designs used for TENGs in various food applications. Based on the performance of TENGs, a detailed introduction is provided on the specific applications of self-powered food sterilization, self-powered food quality monitoring, and self-powered taste sensing in the field of food safety. Finally, this paper discusses the challenges and corresponding strategies of TENGs in the food sensing field. The aim is to further promote unmanned and smart services and management in the food sector and to provide new research perspectives.

摘要

在5G和物联网(IoT)技术快速发展的背景下,迫切需要升级食品传感系统以实现自动化、数字化和智能化。然而,这一转型过程面临诸多挑战。摩擦纳米发电机(TENGs)作为一种新兴的能量转换和传感技术,在这一背景下发挥着关键作用。它们不仅为功能设备提供电力,还在多功能自供电食品传感系统中充当传感器,能够检测各种物理和化学信息。本综述探讨了TENGs在食品传感领域的发展,重点关注其自供电传感的工作原理。该综述还系统地组织和分类了TENGs在各种食品应用中所使用的材料和器件设计。基于TENGs的性能,详细介绍了自供电食品杀菌、自供电食品质量监测以及自供电味觉传感在食品安全领域的具体应用。最后,本文讨论了TENGs在食品传感领域面临的挑战及相应策略。目的是进一步推动食品行业的无人化和智能服务与管理,并提供新的研究视角。

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