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基于无机导电纳米材料的印刷电子学及其在智能食品包装中的应用。

Printed electronics based on inorganic conductive nanomaterials and their applications in intelligent food packaging.

作者信息

Liao Yu, Zhang Rui, Qian Jun

机构信息

School of Printing and Packaging, Wuhan University Luojia Hill Wuhan 430072 China

Chemical & Environmental Engineering, School of Engineering & Applied Science, Yale University 17 Hillhouse Avenue New Haven CT 06511 USA.

出版信息

RSC Adv. 2019 Sep 17;9(50):29154-29172. doi: 10.1039/c9ra05954g. eCollection 2019 Sep 13.

Abstract

The diverse demands of consumers for packaging functions and increasingly complex product circulation systems have spurred the development of intelligent food packaging (IFP). Besides the basic functions of traditional food packaging, which include the protection of food, sales promotion and convenient transportation, the developing area of IFP can detect the condition of food (ambient temperature, humidity, corruption degree, ) in one whole product cycle, and record and feedback information regarding the quality of the packaged food to form a complete product monitoring system. Recently, cutting-edge printed electronics (PE) technology has opened new opportunities for the realization and expansion of IFP functions. Here we introduce some new printed sensors and radio frequency identification (RFID) tags, which are used to form an IFP system. Since conductive ink is the cornerstone of PE, in this paper, the synthesis and properties of inorganic conductive nanomaterials are also reviewed. The formulation of conductive ink, sintering methods and the flexible substrates used in PE are also discussed. Focusing on the state-of-the-art application of PE in the field of IFP, the purpose of this article is to provide a review of IFP that integrates emerging PE technology with prospective next-generation IFP systems to sense, detect, and record feedback information on products in the supply chain environment.

摘要

消费者对包装功能的多样化需求以及日益复杂的产品流通系统推动了智能食品包装(IFP)的发展。除了传统食品包装的基本功能,包括食品保护、促销和便捷运输外,IFP的发展领域能够在整个产品周期内检测食品状况(环境温度、湿度、腐败程度等),并记录和反馈有关包装食品质量的信息,从而形成一个完整的产品监测系统。最近,前沿的印刷电子(PE)技术为IFP功能的实现和扩展带来了新机遇。在此,我们介绍一些用于构建IFP系统的新型印刷传感器和射频识别(RFID)标签。由于导电油墨是PE的基石,本文还综述了无机导电纳米材料的合成与性能。同时也讨论了导电油墨的配方、烧结方法以及PE中使用的柔性基板。本文聚焦于PE在IFP领域的最新应用,旨在对IFP进行综述,将新兴的PE技术与未来的下一代IFP系统相结合,以在供应链环境中感知、检测并记录产品的反馈信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac2/9116116/97a4f561bab2/c9ra05954g-f2.jpg

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